Skip to main content
Erschienen in: Acta Neuropathologica 5/2007

01.05.2007 | Original Paper

Decreased GAD67 mRNA levels in cerebellar Purkinje cells in autism: pathophysiological implications

verfasst von: Jane Yip, Jean-Jacques Soghomonian, Gene J. Blatt

Erschienen in: Acta Neuropathologica | Ausgabe 5/2007

Einloggen, um Zugang zu erhalten

Abstract

The recent identification of decreased protein levels of glutamate decarboxylase (GAD) 65 and 67 isoforms in the autistic cerebellar tissue raises the possibility that abnormal regulation of GABA production in individual neurons may contribute to the clinical features of autism. Reductions in Purkinje cell number have been widely reported in autism. It is not known whether the GAD changes also occur in Purkinje cells at the level of transcription. Using a novel approach, the present study quantified GAD67 mRNA, the most abundant isoform in Purkinje cells, using in situ hybridization in adult autistic and control cases. The results indicate that GAD67 mRNA level was reduced by 40% in the autistic group (P < 0.0001; two-tailed t test), suggesting that reduced Purkinje cell GABA input to the cerebellar nuclei potentially disrupts cerebellar output to higher association cortices affecting motor and/or cognitive function. These findings may also contribute to the understanding of previous reports of alterations in the GABAergic system in limbic and cerebro-cortical areas contributing to a more widespread pathophysiology in autistic brains.
Literatur
1.
Zurück zum Zitat Aggensteiner M, Reiser G (2003) Expression of the brain-specific membrane adapter protein p42IP4/centaurin alpha, a Ins(1,3,4,5)P4/PtdIns(3,4,5)P3 binding protein, in developing rat brain. Dev Brain Res 142:77–87CrossRef Aggensteiner M, Reiser G (2003) Expression of the brain-specific membrane adapter protein p42IP4/centaurin alpha, a Ins(1,3,4,5)P4/PtdIns(3,4,5)P3 binding protein, in developing rat brain. Dev Brain Res 142:77–87CrossRef
2.
Zurück zum Zitat Arin DM, Bauman ML, Kemper TL (1991) The distribution of Purkinje cell loss in the cerebellum in autism. Neurology 41(Suppl):307 Arin DM, Bauman ML, Kemper TL (1991) The distribution of Purkinje cell loss in the cerebellum in autism. Neurology 41(Suppl):307
3.
Zurück zum Zitat Asada H, Kawamura Y, Maruyama K, Kume H, Ding RG, Kanbara N, Kuzume H, Sanbo M, Yagi T, Obata K (1997) Cleft palate and decrased brain gamma-aminobutyric acid in mice lacking the 67-kDa isoform of glutamic acid decarboxylase. Proc Natl Acad Sci USA 94(12): 6496–6499PubMedCrossRef Asada H, Kawamura Y, Maruyama K, Kume H, Ding RG, Kanbara N, Kuzume H, Sanbo M, Yagi T, Obata K (1997) Cleft palate and decrased brain gamma-aminobutyric acid in mice lacking the 67-kDa isoform of glutamic acid decarboxylase. Proc Natl Acad Sci USA 94(12): 6496–6499PubMedCrossRef
4.
Zurück zum Zitat Bauman ML, Kemper TL (1985) Histoanatomic observations of the brain in early infantile autism. Neurology 35:866–874PubMed Bauman ML, Kemper TL (1985) Histoanatomic observations of the brain in early infantile autism. Neurology 35:866–874PubMed
5.
Zurück zum Zitat Bauman ML, Kemper TL (1994) Neuroanatomic observations of the brain in autism. In: Bauman ML, Kemper TL (eds) The neurobiology of autism. John Hopkins University Press, Baltimore, pp 119–145 Bauman ML, Kemper TL (1994) Neuroanatomic observations of the brain in autism. In: Bauman ML, Kemper TL (eds) The neurobiology of autism. John Hopkins University Press, Baltimore, pp 119–145
6.
Zurück zum Zitat Bauman ML, Kemper TL (2005) Neuroanatomic observations of the brain in autism: a review and future directions. Int J Dev Neurosci 23:183–187PubMedCrossRef Bauman ML, Kemper TL (2005) Neuroanatomic observations of the brain in autism: a review and future directions. Int J Dev Neurosci 23:183–187PubMedCrossRef
7.
Zurück zum Zitat Blatt GJ, Fitzgerald CM, Guptill JT, Booker AB, Kemper TL, Bauman ML (2001) Density and distribution of hippocampal neurotransmitter receptors in autism: an autoradiographic study. J Autism Dev Disord 31(6):537–543PubMedCrossRef Blatt GJ, Fitzgerald CM, Guptill JT, Booker AB, Kemper TL, Bauman ML (2001) Density and distribution of hippocampal neurotransmitter receptors in autism: an autoradiographic study. J Autism Dev Disord 31(6):537–543PubMedCrossRef
8.
Zurück zum Zitat Blatt GJ (2005) GABAergic cerebellar system in autism: a neuropathological and developmental perspective. Int Rev Neurobiol 71:167–178PubMed Blatt GJ (2005) GABAergic cerebellar system in autism: a neuropathological and developmental perspective. Int Rev Neurobiol 71:167–178PubMed
9.
Zurück zum Zitat Brooksbank BW, Atkinson DJ, Balazs R (1981) Biochemical development of the human brain. II. Some parameters of the GABAergic system. Dev Neurosci 4(3):188–200PubMed Brooksbank BW, Atkinson DJ, Balazs R (1981) Biochemical development of the human brain. II. Some parameters of the GABAergic system. Dev Neurosci 4(3):188–200PubMed
10.
Zurück zum Zitat Bu DF, Erlander MG, Hiltz BC, Tillakaratne NJK, Kaufman DI, Wagber-McPherson CB, Evan GA, Tobin AJ (1992) Two human glutamate decarboxylase, 65 kDa GAD and 67 kDa GAD, are each encoded by a single gene. Proc Natl Acad Sci USA 89:2115–2119PubMedCrossRef Bu DF, Erlander MG, Hiltz BC, Tillakaratne NJK, Kaufman DI, Wagber-McPherson CB, Evan GA, Tobin AJ (1992) Two human glutamate decarboxylase, 65 kDa GAD and 67 kDa GAD, are each encoded by a single gene. Proc Natl Acad Sci USA 89:2115–2119PubMedCrossRef
11.
Zurück zum Zitat Buxbaum JD, Silverman JM, Smith CJ, Kilifarski M, Reichert J, Hollander E, Lawlor BA, Fitzgerald M, Greenberg DA, Davis KL (2001) Evidence for a susceptibility gene for autism chromosome 2 for genetic heterogeneity. Am J Hum Genet 68(6):1514–1520PubMedCrossRef Buxbaum JD, Silverman JM, Smith CJ, Kilifarski M, Reichert J, Hollander E, Lawlor BA, Fitzgerald M, Greenberg DA, Davis KL (2001) Evidence for a susceptibility gene for autism chromosome 2 for genetic heterogeneity. Am J Hum Genet 68(6):1514–1520PubMedCrossRef
12.
Zurück zum Zitat Center for Disease Control (CDC): 2006 autismspeaks.org Center for Disease Control (CDC): 2006 autismspeaks.org
13.
Zurück zum Zitat Chan-Palay V, Palay SL, Wu JY (1979) Gamma-aminobutyric acid pathways in the cerebellum studied by retrograde and anterograde transport of glutamic acid decarboxylase antibody after in vivo injections. Anat Embryol (Berl) 157(1):1–14CrossRef Chan-Palay V, Palay SL, Wu JY (1979) Gamma-aminobutyric acid pathways in the cerebellum studied by retrograde and anterograde transport of glutamic acid decarboxylase antibody after in vivo injections. Anat Embryol (Berl) 157(1):1–14CrossRef
14.
Zurück zum Zitat Chesselet MF, Weiss L, Wuenschell C, Tobin AJ, Affolter H-U (1987) Comparative distribution of mRNAs for glutamic acid decarboxylase, tyrosine hydroxylase, and tachykinins in the basal ganglia: an in situ hybridization study in the rodent brain. J Comp Neurol 262:125–140PubMedCrossRef Chesselet MF, Weiss L, Wuenschell C, Tobin AJ, Affolter H-U (1987) Comparative distribution of mRNAs for glutamic acid decarboxylase, tyrosine hydroxylase, and tachykinins in the basal ganglia: an in situ hybridization study in the rodent brain. J Comp Neurol 262:125–140PubMedCrossRef
15.
Zurück zum Zitat Cox KH, DeLeon DV, Angerer LM, Angerer RC (1984) Detection of mRNAs in sea urchin embryos by in situ hybridization using asymmetric RNA probes. Dev Biol 101:485–502PubMedCrossRef Cox KH, DeLeon DV, Angerer LM, Angerer RC (1984) Detection of mRNAs in sea urchin embryos by in situ hybridization using asymmetric RNA probes. Dev Biol 101:485–502PubMedCrossRef
16.
Zurück zum Zitat Crepel F, Mariani J (1976) Multiple innervation of Purkinje cells by climbing fibers in the cerebellum of the weaver mutant mouse. J Neurobiol 7(6):579–582PubMedCrossRef Crepel F, Mariani J (1976) Multiple innervation of Purkinje cells by climbing fibers in the cerebellum of the weaver mutant mouse. J Neurobiol 7(6):579–582PubMedCrossRef
17.
Zurück zum Zitat Crepel F, Delhaye-Bouchaud N, Guastavino JM, Sampaio I (1980) Multiple innervation of cerebellar Purkinje cells by climbing fibers in staggerer mutant mouse. Nature 283(5746):483–484PubMedCrossRef Crepel F, Delhaye-Bouchaud N, Guastavino JM, Sampaio I (1980) Multiple innervation of cerebellar Purkinje cells by climbing fibers in staggerer mutant mouse. Nature 283(5746):483–484PubMedCrossRef
18.
Zurück zum Zitat Dhossche D, Applegate H, Abraham A, Maertens P, Bland L, Bencsath A, Martinez J (2002) Elevated plasma GABA levels in autistic youngsters: stimulus for a GABA hypothesis in autism. Med Sci Monitor 8(8):PR1–PR6 Dhossche D, Applegate H, Abraham A, Maertens P, Bland L, Bencsath A, Martinez J (2002) Elevated plasma GABA levels in autistic youngsters: stimulus for a GABA hypothesis in autism. Med Sci Monitor 8(8):PR1–PR6
19.
Zurück zum Zitat Drengler SM, Oltman GA (1993) Rapid increases in cerebellar Purkinje cell glutamic acid decarboxylase GAD67 mRNA after lesion-induced increases in cell firing. Brain Res 615(1):175–179PubMedCrossRef Drengler SM, Oltman GA (1993) Rapid increases in cerebellar Purkinje cell glutamic acid decarboxylase GAD67 mRNA after lesion-induced increases in cell firing. Brain Res 615(1):175–179PubMedCrossRef
20.
Zurück zum Zitat Erlander MG, Tillakaratne NJ, Feldblum S, Patel N, Tobin AJ (1991a) Two genes encode distinct glutamate decarboxylases. Neuron 7:91–100CrossRef Erlander MG, Tillakaratne NJ, Feldblum S, Patel N, Tobin AJ (1991a) Two genes encode distinct glutamate decarboxylases. Neuron 7:91–100CrossRef
21.
Zurück zum Zitat Erlander MG, Tobin AJ (1991b) The structural and functional heterogeneity of glutamate decarboxylase. A review. Neurochem Res 16:215–226CrossRef Erlander MG, Tobin AJ (1991b) The structural and functional heterogeneity of glutamate decarboxylase. A review. Neurochem Res 16:215–226CrossRef
22.
Zurück zum Zitat Esclapez M, Tillakaratne NJK, Tobin AJ, Houser CR (1993) Comparative localization of mRNAs encoding two forms of glutamic acid decarboxylase with non radioactive in situ hybridization methods. J Comp Neurol 331:339–362PubMedCrossRef Esclapez M, Tillakaratne NJK, Tobin AJ, Houser CR (1993) Comparative localization of mRNAs encoding two forms of glutamic acid decarboxylase with non radioactive in situ hybridization methods. J Comp Neurol 331:339–362PubMedCrossRef
23.
Zurück zum Zitat Esclapez M, Tillakaratne NJ, Kaufman DL, Tobin AJ, Houser CR (1994) Comparative localization of two forms of glutamic acid decarboxylase and their mRNAs in rat brain supports the concept of functional differences between the forms. J Neurosci 14(3 Pt 2):1834–1855PubMed Esclapez M, Tillakaratne NJ, Kaufman DL, Tobin AJ, Houser CR (1994) Comparative localization of two forms of glutamic acid decarboxylase and their mRNAs in rat brain supports the concept of functional differences between the forms. J Neurosci 14(3 Pt 2):1834–1855PubMed
24.
Zurück zum Zitat Fatemi SH, Halt AR, Realmuto G, Earle J, Kist DA, Thuras P, Mer A (2002a) Purkinje cell size is reduced in cerebellum of patients with autism. Cell Mol Neurobiol 22(2):171–175CrossRef Fatemi SH, Halt AR, Realmuto G, Earle J, Kist DA, Thuras P, Mer A (2002a) Purkinje cell size is reduced in cerebellum of patients with autism. Cell Mol Neurobiol 22(2):171–175CrossRef
25.
Zurück zum Zitat Fatemi SH, Halt AR, Stary JM, Kanodia R, Schulz SC, Realmuto GR (2002b) Glutamic acid decarboxylase 65 and 67 kDa proteins are reduced in autistic parietal and cerebellar cortices. Biol Psych 52:805–810CrossRef Fatemi SH, Halt AR, Stary JM, Kanodia R, Schulz SC, Realmuto GR (2002b) Glutamic acid decarboxylase 65 and 67 kDa proteins are reduced in autistic parietal and cerebellar cortices. Biol Psych 52:805–810CrossRef
26.
Zurück zum Zitat Feldblum S, Erlander MG, Tobin AJ (1993) Different distributions of GAD65 and GAD67 mRNAs suggest that the two glutamate decarboxylases play distinctive functional roles. J Neurosci Res 34(6):689–706PubMedCrossRef Feldblum S, Erlander MG, Tobin AJ (1993) Different distributions of GAD65 and GAD67 mRNAs suggest that the two glutamate decarboxylases play distinctive functional roles. J Neurosci Res 34(6):689–706PubMedCrossRef
27.
Zurück zum Zitat Greger V, Knoll JH, Woolf F, Glatt K, Tyndale RF, DeLorey TM, Olsen RW, Tobin AJ, Sikela JM, Nakatsu Y et al (1995) The gamma-aminobutyric acid receptor gamma 3 subunit gene (GABARG3) is tightly linked to the alpha 5 subunit gene (GABRA5) on human chromosome 15q11-q13 and is transcribed in the same orientation. Genomics 26(2):258–264PubMedCrossRef Greger V, Knoll JH, Woolf F, Glatt K, Tyndale RF, DeLorey TM, Olsen RW, Tobin AJ, Sikela JM, Nakatsu Y et al (1995) The gamma-aminobutyric acid receptor gamma 3 subunit gene (GABARG3) is tightly linked to the alpha 5 subunit gene (GABRA5) on human chromosome 15q11-q13 and is transcribed in the same orientation. Genomics 26(2):258–264PubMedCrossRef
28.
Zurück zum Zitat Gepner B, Mestre DR (2002) Postural reactivity to fast visual motion differentiates autistic from children with Asperger syndrome. J Autism Dev Disord 32:231–238PubMedCrossRef Gepner B, Mestre DR (2002) Postural reactivity to fast visual motion differentiates autistic from children with Asperger syndrome. J Autism Dev Disord 32:231–238PubMedCrossRef
29.
Zurück zum Zitat Guidotti A, Auta J, Davis JM, Di-Giorgi-Gerevinin V, Dwivedi Y, Grayson DR, Impagnateillo F, Pandey G, Pesold C, Sharma R, Uzunov D, Costa E (2000) Decrease in reelin and glutamic acid decarboxylase 67 (GAD67) expression in schizophrenia and bipolar disorder: a postmortem brain study. Arch Gen Psychiatry 57(11):1061–1069PubMedCrossRef Guidotti A, Auta J, Davis JM, Di-Giorgi-Gerevinin V, Dwivedi Y, Grayson DR, Impagnateillo F, Pandey G, Pesold C, Sharma R, Uzunov D, Costa E (2000) Decrease in reelin and glutamic acid decarboxylase 67 (GAD67) expression in schizophrenia and bipolar disorder: a postmortem brain study. Arch Gen Psychiatry 57(11):1061–1069PubMedCrossRef
30.
Zurück zum Zitat Hamilton SP, Woo JM, Carlson EJ, Ghanem E, Ekker M, Rubenstein JLR (2005) Analysis of four DLX homeobox genes in autistic probands. BMC Genetics 6:52PubMedCrossRef Hamilton SP, Woo JM, Carlson EJ, Ghanem E, Ekker M, Rubenstein JLR (2005) Analysis of four DLX homeobox genes in autistic probands. BMC Genetics 6:52PubMedCrossRef
31.
Zurück zum Zitat Hashimoto T, Bergen SE, Nguyen QL, Xu B, Monteggia LM, Pierri JN, Sun Z, Sampson AR, Lewis DA (2005) Relationship of brain-derived neurotrophic factor and its receptor TrkB to altered inhibitory prefrontal circuitry in schizophrenia. J Neurosci 25(2):372–383PubMedCrossRef Hashimoto T, Bergen SE, Nguyen QL, Xu B, Monteggia LM, Pierri JN, Sun Z, Sampson AR, Lewis DA (2005) Relationship of brain-derived neurotrophic factor and its receptor TrkB to altered inhibitory prefrontal circuitry in schizophrenia. J Neurosci 25(2):372–383PubMedCrossRef
32.
Zurück zum Zitat Heckers S, stone D, Walsh J, Shick J, Koul P, Benes FM (2002) Differential hippocampal expression glutamic acid decarboxylase 65 and 67 messenger RNA in bipolar disorder and schizophrenia. Arch Gen Psych 59(6):521–529CrossRef Heckers S, stone D, Walsh J, Shick J, Koul P, Benes FM (2002) Differential hippocampal expression glutamic acid decarboxylase 65 and 67 messenger RNA in bipolar disorder and schizophrenia. Arch Gen Psych 59(6):521–529CrossRef
33.
Zurück zum Zitat Hynd M, Lewohl JM, Scott HL, Dodd PR (2003) Biochemical and molecular studies using human autopsy brain tissue. J Neurochem 85:543–562PubMedCrossRef Hynd M, Lewohl JM, Scott HL, Dodd PR (2003) Biochemical and molecular studies using human autopsy brain tissue. J Neurochem 85:543–562PubMedCrossRef
34.
Zurück zum Zitat IMGSAC (2001) A genomewide screen for autism: strong evidence for linkage to chromosome 2q, 7q, and 16p. Am J Hum Genet 69:570–581 IMGSAC (2001) A genomewide screen for autism: strong evidence for linkage to chromosome 2q, 7q, and 16p. Am J Hum Genet 69:570–581
35.
Zurück zum Zitat Impagnatiello F, Guidotti AR, Pesold C, Dwivedi Y, Caruncho H, Pisu MG, Uzunov DP, Smalheiser NR, Davis JM, Pandey GN, Pappas GD, Tueting P, Sharma RP, Costa E (1998) A decrease of reelin expression as a putative vulnerability factor in schizophrenia. Proc Natl Acad Sci USA 95(26):15718–15723PubMedCrossRef Impagnatiello F, Guidotti AR, Pesold C, Dwivedi Y, Caruncho H, Pisu MG, Uzunov DP, Smalheiser NR, Davis JM, Pandey GN, Pappas GD, Tueting P, Sharma RP, Costa E (1998) A decrease of reelin expression as a putative vulnerability factor in schizophrenia. Proc Natl Acad Sci USA 95(26):15718–15723PubMedCrossRef
36.
Zurück zum Zitat Jeneskog T, Padel Y (1984) An excitatory pathway through dorsal columns to rubrospinal cells in the cat. J Physiol 353:355–373PubMed Jeneskog T, Padel Y (1984) An excitatory pathway through dorsal columns to rubrospinal cells in the cat. J Physiol 353:355–373PubMed
37.
Zurück zum Zitat Jones RS (1988) Epileptiform events induced by GABA-antagonists in entorhinal cortical cells in vitro are partly mediated by NMDA receptors. Brain Res 457(1):113–121PubMedCrossRef Jones RS (1988) Epileptiform events induced by GABA-antagonists in entorhinal cortical cells in vitro are partly mediated by NMDA receptors. Brain Res 457(1):113–121PubMedCrossRef
38.
Zurück zum Zitat Jones MW, Kilpatrick IC, Phillipson OT (1988) Dopamine function in the prefrontal cortex of the rat is sensitive to a reduction of tonic GABA-mediated inhibition in the thalamic mediodorsal nucleus. Exp Brain Res 69(3):623–634PubMedCrossRef Jones MW, Kilpatrick IC, Phillipson OT (1988) Dopamine function in the prefrontal cortex of the rat is sensitive to a reduction of tonic GABA-mediated inhibition in the thalamic mediodorsal nucleus. Exp Brain Res 69(3):623–634PubMedCrossRef
39.
Zurück zum Zitat Kalkman HO, Loetscher (2003) GAD67: the link between the GABA-deficit hypothesis and the dopaminergic- and glutamatergic theories of psychosis. J Neural Transm 110:803–812PubMed Kalkman HO, Loetscher (2003) GAD67: the link between the GABA-deficit hypothesis and the dopaminergic- and glutamatergic theories of psychosis. J Neural Transm 110:803–812PubMed
40.
Zurück zum Zitat Kanner L (1943) Autistic disturbances of affective contact. Nerv Child 2:217–250 Kanner L (1943) Autistic disturbances of affective contact. Nerv Child 2:217–250
41.
Zurück zum Zitat Katz J, Nielsen KM, Soghomonian JJ (2005) Comparative effects of acute or chronic administration of levodopa to 6-hydroxydopamine-lesioned rats on the expression of glutamic acid decarboxylase in the neostriatum and GABAA receptors subunits in the substantia nigra pars reticulata. Neurosci 132(3):833–842CrossRef Katz J, Nielsen KM, Soghomonian JJ (2005) Comparative effects of acute or chronic administration of levodopa to 6-hydroxydopamine-lesioned rats on the expression of glutamic acid decarboxylase in the neostriatum and GABAA receptors subunits in the substantia nigra pars reticulata. Neurosci 132(3):833–842CrossRef
42.
Zurück zum Zitat Kaufman DL, Houser CR, Tobin AJ (1991) Two forms of the gamma-aminobutyric acid synthetic enzyme glutamate decarboxylase have distinct intraneuronal distributions and cofactor interactions. J Neurochem 56(2):720–723PubMedCrossRef Kaufman DL, Houser CR, Tobin AJ (1991) Two forms of the gamma-aminobutyric acid synthetic enzyme glutamate decarboxylase have distinct intraneuronal distributions and cofactor interactions. J Neurochem 56(2):720–723PubMedCrossRef
43.
Zurück zum Zitat Kemper TL, Bauman ML (1998) Neuropathology of infantile autism. J Neuropathol Exp Neurol 57(7):645–652PubMed Kemper TL, Bauman ML (1998) Neuropathology of infantile autism. J Neuropathol Exp Neurol 57(7):645–652PubMed
44.
Zurück zum Zitat Kern JK (2003) Purkinje cell vulnerability and autism: a possible etiological connection. Brain Dev 25(6):377–382PubMedCrossRef Kern JK (2003) Purkinje cell vulnerability and autism: a possible etiological connection. Brain Dev 25(6):377–382PubMedCrossRef
45.
Zurück zum Zitat Laprade N, Soghomonian JJ (1995) Differential regulation of mRNA levels encoding for the two isoforms of glutamate decarboxylase (GAD65 and GAD67) by dopamine receptors in the rat striatum. Brain Res Mol Brain Res 34(1):65–74PubMedCrossRef Laprade N, Soghomonian JJ (1995) Differential regulation of mRNA levels encoding for the two isoforms of glutamate decarboxylase (GAD65 and GAD67) by dopamine receptors in the rat striatum. Brain Res Mol Brain Res 34(1):65–74PubMedCrossRef
46.
Zurück zum Zitat Lauder JM, Han VKM, Henderson P, Verdoorn T, Towle AC (1986) Prenatal ontogeny of the GABAergic system in the rat brain: an immunocytochemical study. Neurosci 2:4658–4693 Lauder JM, Han VKM, Henderson P, Verdoorn T, Towle AC (1986) Prenatal ontogeny of the GABAergic system in the rat brain: an immunocytochemical study. Neurosci 2:4658–4693
47.
Zurück zum Zitat Lauritsen M, Mors O, Mortensen PB, Ewald H (1999) Infantile autism and associated autosomal chromosome abnormalities: a register-based study and a literature survey. J Child Psychol Psych 40(3):335–345CrossRef Lauritsen M, Mors O, Mortensen PB, Ewald H (1999) Infantile autism and associated autosomal chromosome abnormalities: a register-based study and a literature survey. J Child Psychol Psych 40(3):335–345CrossRef
48.
Zurück zum Zitat Legay F, Pelhate S, Tappaz M.L. (1982) Phylogenesis of brain glutamic acid decarboxylase from vertebrates: Immunohistochemical studies. J Neurochem 46:1478–1486CrossRef Legay F, Pelhate S, Tappaz M.L. (1982) Phylogenesis of brain glutamic acid decarboxylase from vertebrates: Immunohistochemical studies. J Neurochem 46:1478–1486CrossRef
49.
Zurück zum Zitat Levisohn L, Cronin-golomb A, Schmahmann JD (2000) Neuropsychological consequence of cerebellar tumor resection in children: cerebellar cognitive affective syndrome in a pediatric population. Brain 123:1041–1050PubMedCrossRef Levisohn L, Cronin-golomb A, Schmahmann JD (2000) Neuropsychological consequence of cerebellar tumor resection in children: cerebellar cognitive affective syndrome in a pediatric population. Brain 123:1041–1050PubMedCrossRef
50.
Zurück zum Zitat Lipska BK, Weinberger DR (2000) To model a psychiatric disorder in animals: schizophrenia as a reality test. Neuropsychopharmacol 23(3):223–239CrossRef Lipska BK, Weinberger DR (2000) To model a psychiatric disorder in animals: schizophrenia as a reality test. Neuropsychopharmacol 23(3):223–239CrossRef
51.
Zurück zum Zitat Llinas RR, Walton KD, Lang EJ (2003) Cerebellum. In: Shepherd GM (eds) The synaptic organization of the brain, 5th ed. Oxford University Press, New York, pp 271–309 Llinas RR, Walton KD, Lang EJ (2003) Cerebellum. In: Shepherd GM (eds) The synaptic organization of the brain, 5th ed. Oxford University Press, New York, pp 271–309
52.
Zurück zum Zitat Ma DQ, Whitehead PL, Menold MM, Martin ER, Ashley-Koch AE, Mei H, Ritchie MD, Delong GR, Abramson RK, Wright HH, Cuccaro ML, Hussman JP, Gilbert JR, Pericak-Vance MA (2005) Identification of significant association and gene–gene interaction of GABA receptor subunit genes in autism. Am J Hum Genet 77:377–388PubMedCrossRef Ma DQ, Whitehead PL, Menold MM, Martin ER, Ashley-Koch AE, Mei H, Ritchie MD, Delong GR, Abramson RK, Wright HH, Cuccaro ML, Hussman JP, Gilbert JR, Pericak-Vance MA (2005) Identification of significant association and gene–gene interaction of GABA receptor subunit genes in autism. Am J Hum Genet 77:377–388PubMedCrossRef
53.
Zurück zum Zitat Maddox LO, Menold MM, Bass MP, Rogala AR, Pericak-Vance MA, Vance JM, Gilbert JR (1999) Autistic disorder and chromosome 15q11-q13: construction and analysis of a BAC/PAC contig. Genomics 62(3):325–331PubMedCrossRef Maddox LO, Menold MM, Bass MP, Rogala AR, Pericak-Vance MA, Vance JM, Gilbert JR (1999) Autistic disorder and chromosome 15q11-q13: construction and analysis of a BAC/PAC contig. Genomics 62(3):325–331PubMedCrossRef
54.
Zurück zum Zitat Maniatis T, Frisch EF, Sambrook P (1982) Molecular cloning: a laboratory manual. Cold Spring Harbor Laboratory, New York Maniatis T, Frisch EF, Sambrook P (1982) Molecular cloning: a laboratory manual. Cold Spring Harbor Laboratory, New York
55.
Zurück zum Zitat Martin ER, Menold MM, Wolpert CM, Bass MP, Donnelly SL, Ravan SA, Zimmerman A, Gilbert JR, Vance JM, Maddox LO, Wright HH, Abramson RK, Delong GR, Cuccaro ML, Pericak-Vance MA (2000) Analysis of linkage disequilibrium in GABA receptor subunit genes in autistic disorder. Am J Med Genet 96:43–48PubMedCrossRef Martin ER, Menold MM, Wolpert CM, Bass MP, Donnelly SL, Ravan SA, Zimmerman A, Gilbert JR, Vance JM, Maddox LO, Wright HH, Abramson RK, Delong GR, Cuccaro ML, Pericak-Vance MA (2000) Analysis of linkage disequilibrium in GABA receptor subunit genes in autistic disorder. Am J Med Genet 96:43–48PubMedCrossRef
56.
Zurück zum Zitat Mari M, Castiello U, Marks D, Marraffa C, Prior M (2003) The reach to grasp movement in children with autism spectrum disorder. Phil Trans R. Soc Lond B 358:393–403CrossRef Mari M, Castiello U, Marks D, Marraffa C, Prior M (2003) The reach to grasp movement in children with autism spectrum disorder. Phil Trans R. Soc Lond B 358:393–403CrossRef
57.
Zurück zum Zitat Mariani J (1982) Extent of multiple innervation of Purkinje cells by climbing fibers in the olivocerebellar system of weaver, reeler, and staggerer mutant mice. J Neurobiol 13(2):119–126PubMedCrossRef Mariani J (1982) Extent of multiple innervation of Purkinje cells by climbing fibers in the olivocerebellar system of weaver, reeler, and staggerer mutant mice. J Neurobiol 13(2):119–126PubMedCrossRef
58.
Zurück zum Zitat Mengod G, Goudsmit E, Probst A, Palacios JM (1992) In situ hybridization in the human hypothalamus. Prog Brain Res 93:45–55PubMed Mengod G, Goudsmit E, Probst A, Palacios JM (1992) In situ hybridization in the human hypothalamus. Prog Brain Res 93:45–55PubMed
59.
Zurück zum Zitat Moffett JR, Palkovits M, Namboodiri A, Neale JH (1994) Comparative distribution of N-acetlyaspartylglutamate and GAD67 in the cerebellum and precerebellar nuclei of the rat utilizing enhanced carboiimide fixation and immunohistochemistry. J Comp Neurol 347(4):598–618PubMedCrossRef Moffett JR, Palkovits M, Namboodiri A, Neale JH (1994) Comparative distribution of N-acetlyaspartylglutamate and GAD67 in the cerebellum and precerebellar nuclei of the rat utilizing enhanced carboiimide fixation and immunohistochemistry. J Comp Neurol 347(4):598–618PubMedCrossRef
60.
Zurück zum Zitat Muhle R, Trentacoste SV, Rapin I (2004) The genetics of autism. Pediatrics 113(5):472–486CrossRef Muhle R, Trentacoste SV, Rapin I (2004) The genetics of autism. Pediatrics 113(5):472–486CrossRef
61.
Zurück zum Zitat Olney JW, Farber NB (1995) NMDA antagonists as neurotherapeutic drugs, psychotogens, neurotoxins, and research tools for studying schizophrenia. Neuropsychopharmacol 13(4):335–345CrossRef Olney JW, Farber NB (1995) NMDA antagonists as neurotherapeutic drugs, psychotogens, neurotoxins, and research tools for studying schizophrenia. Neuropsychopharmacol 13(4):335–345CrossRef
62.
Zurück zum Zitat Palacios JM, Mengod G (1992) Visualization of neurotransmitter receptors and their mRNAs in the human brain. Arzneimittelforschung 42(2A):189–195PubMed Palacios JM, Mengod G (1992) Visualization of neurotransmitter receptors and their mRNAs in the human brain. Arzneimittelforschung 42(2A):189–195PubMed
63.
Zurück zum Zitat Palay SL, Chan-Palay V (1974) Cerebellar cortex: cytology and organization. Springer, Berlin Heidelberg New York Palay SL, Chan-Palay V (1974) Cerebellar cortex: cytology and organization. Springer, Berlin Heidelberg New York
64.
Zurück zum Zitat Philippe A, Martinez M, Bataille-Guillot M, Gillberg C, Rastam M, Sponheim E, Coleman M, Zappella M, Aschauer H, Van Maldergerm LV, Penet C, Feingold J, Brice A, Leboyer M, the Paris Autism Research International Sibpair study. (1999) An autosomal genomic screen for autism. Collaborative linkage study of autism. Am J Hum Genet 68:1514–1520 Philippe A, Martinez M, Bataille-Guillot M, Gillberg C, Rastam M, Sponheim E, Coleman M, Zappella M, Aschauer H, Van Maldergerm LV, Penet C, Feingold J, Brice A, Leboyer M, the Paris Autism Research International Sibpair study. (1999) An autosomal genomic screen for autism. Collaborative linkage study of autism. Am J Hum Genet 68:1514–1520
65.
Zurück zum Zitat Pierce K, Courchesne E (2001) Evidence for a cerebellar role in reduced exploration and stereotyped behavior in autism. Biol Psych 49:655–664CrossRef Pierce K, Courchesne E (2001) Evidence for a cerebellar role in reduced exploration and stereotyped behavior in autism. Biol Psych 49:655–664CrossRef
66.
Zurück zum Zitat Preece P, Virley DJ, Costandi M, Coombes R, Moss SJ, Mudge AW, Jazin E, Cairns NJ (2003) An optimistic view for quantifying mRNA in post mortem human brain. Mol Brain Res 116:7–16PubMedCrossRef Preece P, Virley DJ, Costandi M, Coombes R, Moss SJ, Mudge AW, Jazin E, Cairns NJ (2003) An optimistic view for quantifying mRNA in post mortem human brain. Mol Brain Res 116:7–16PubMedCrossRef
67.
Zurück zum Zitat Rabionet R, Jaworski JM, Ashley-Koch AE, Martin ER, Sutcliffe JS, Haines JL, Delong GR, Abramson RK, Wright HH, Cuccaro ML, Gilbert JR, Pericak-Vance MA (2004) Analysis of the autism chromosome 2 linkage region: GAD1 and other candidate genes. Neurosci Lett 372:209–214PubMedCrossRef Rabionet R, Jaworski JM, Ashley-Koch AE, Martin ER, Sutcliffe JS, Haines JL, Delong GR, Abramson RK, Wright HH, Cuccaro ML, Gilbert JR, Pericak-Vance MA (2004) Analysis of the autism chromosome 2 linkage region: GAD1 and other candidate genes. Neurosci Lett 372:209–214PubMedCrossRef
68.
Zurück zum Zitat Ramnani N (2006) The primate cortico-cerebellar system—anatomy and function. Nat Neurosci Rev 7(7):511–522CrossRef Ramnani N (2006) The primate cortico-cerebellar system—anatomy and function. Nat Neurosci Rev 7(7):511–522CrossRef
69.
Zurück zum Zitat Rapin I (1991) Autistic children: diagnosis and clinical feature. Pediatrics 87:751–760PubMed Rapin I (1991) Autistic children: diagnosis and clinical feature. Pediatrics 87:751–760PubMed
71.
Zurück zum Zitat Rimvall K, Sheikh SN, Martin DL (1993) Effects of increased γ-aminobutyric acid levels on GAD67 protein and mRNA levels in rat cerebral cortex. J Neurochem 60:714–720PubMedCrossRef Rimvall K, Sheikh SN, Martin DL (1993) Effects of increased γ-aminobutyric acid levels on GAD67 protein and mRNA levels in rat cerebral cortex. J Neurochem 60:714–720PubMedCrossRef
72.
Zurück zum Zitat Rimvall K, Martin DL (1994) The level of GAD67 protein is highly sensitive to small increases in intraneuronal γ-aminobutyric acid levels. J Neurochem 62:1375–1381PubMedCrossRef Rimvall K, Martin DL (1994) The level of GAD67 protein is highly sensitive to small increases in intraneuronal γ-aminobutyric acid levels. J Neurochem 62:1375–1381PubMedCrossRef
73.
Zurück zum Zitat Rinehart NJ, Bradshaw JL, Brereton AV, Tonge BJ (2001) Movement preparation in high functioning autism and Asperger disorder: a serial choice reaction time task involving motor reprogramming. J Autism Dev Disord 31(1):79–88PubMedCrossRef Rinehart NJ, Bradshaw JL, Brereton AV, Tonge BJ (2001) Movement preparation in high functioning autism and Asperger disorder: a serial choice reaction time task involving motor reprogramming. J Autism Dev Disord 31(1):79–88PubMedCrossRef
74.
Zurück zum Zitat Risch N, Spiker D, Lotspeich L, Nouri N, Hinds D, Hallmayer J, Kalaydjieva L, McCague P, Dimiceli S, Pitts, Nguyen L, Yang J, Harper C, Thorpe D, Vermeer S, Young H, Herbert J, Lin A, Ferguson J, Chiotti C, Wiese-Slater S, Rogers T, Salmon B, Nicholas P, Petersen PB, Pingree C, McMahon W, Wong DL, Cavalli-Sforza LL, Kraemer HC, Myers RM (1999) A genomic screen of autism: evidence for a multilocus etiology. Am J Hum Genet 65(2):493–507PubMedCrossRef Risch N, Spiker D, Lotspeich L, Nouri N, Hinds D, Hallmayer J, Kalaydjieva L, McCague P, Dimiceli S, Pitts, Nguyen L, Yang J, Harper C, Thorpe D, Vermeer S, Young H, Herbert J, Lin A, Ferguson J, Chiotti C, Wiese-Slater S, Rogers T, Salmon B, Nicholas P, Petersen PB, Pingree C, McMahon W, Wong DL, Cavalli-Sforza LL, Kraemer HC, Myers RM (1999) A genomic screen of autism: evidence for a multilocus etiology. Am J Hum Genet 65(2):493–507PubMedCrossRef
75.
Zurück zum Zitat Riva D, Giorgi (2000) The cerebellum contributes to higher functions during development: evidence from a series of children surgically treated for posterior fossa tumors. Brain 123:1051–1061PubMedCrossRef Riva D, Giorgi (2000) The cerebellum contributes to higher functions during development: evidence from a series of children surgically treated for posterior fossa tumors. Brain 123:1051–1061PubMedCrossRef
76.
Zurück zum Zitat Schmahmann JD, Doyon J, Toga AW, Petrides M, Evans AC (2000) MRI atlas of the cerebellum. Academic, New York Schmahmann JD, Doyon J, Toga AW, Petrides M, Evans AC (2000) MRI atlas of the cerebellum. Academic, New York
77.
Zurück zum Zitat Schmahmann JD, Kiliany RJ, Moore TL, DeMong C, MacMore JP, Moss MB (2004) Cerebellar dentate nucleus lesions impair flexibility but not motor function in monkeys. Soc Neurosci Abstr 34:254–312 Schmahmann JD, Kiliany RJ, Moore TL, DeMong C, MacMore JP, Moss MB (2004) Cerebellar dentate nucleus lesions impair flexibility but not motor function in monkeys. Soc Neurosci Abstr 34:254–312
78.
Zurück zum Zitat Schroer RJ, Phelan MC, Michaelis RC, Crawford EC, Skinner SA, Cuccaro M, Simensen RJ, Bishop J, Skinner C, Fender D, Stevensone RE (1998) Autism and maternally derived aberrations of chromosome 15q. Am J Med Genet 76:327–336PubMedCrossRef Schroer RJ, Phelan MC, Michaelis RC, Crawford EC, Skinner SA, Cuccaro M, Simensen RJ, Bishop J, Skinner C, Fender D, Stevensone RE (1998) Autism and maternally derived aberrations of chromosome 15q. Am J Med Genet 76:327–336PubMedCrossRef
79.
Zurück zum Zitat Segovia J, Tillakaratne NJ, Whelan K, Tobin AJ, Gale K (1990) Parallel increases in striatal glutamic acid decarboxylase activity and mRNA levels in rats with lesions of the nigrostriatal pathway. Brain Res 529:345–348PubMedCrossRef Segovia J, Tillakaratne NJ, Whelan K, Tobin AJ, Gale K (1990) Parallel increases in striatal glutamic acid decarboxylase activity and mRNA levels in rats with lesions of the nigrostriatal pathway. Brain Res 529:345–348PubMedCrossRef
80.
Zurück zum Zitat Shao Y, Wolpert CM, Raiford KL, Menold MM, Donnelly SL, Ravan SA, Bass MP, McClain C, Von Wendt L, Vance JM, Abramson RH, Wright HH, Ashley-Koch A, Gilbert JR, DeLong RG, Cuccaro ML, Pericak-Vance MA (2002) Genomic screen and follow-up analysis for autistic disorder. Am J Med Genet 114:99–105PubMedCrossRef Shao Y, Wolpert CM, Raiford KL, Menold MM, Donnelly SL, Ravan SA, Bass MP, McClain C, Von Wendt L, Vance JM, Abramson RH, Wright HH, Ashley-Koch A, Gilbert JR, DeLong RG, Cuccaro ML, Pericak-Vance MA (2002) Genomic screen and follow-up analysis for autistic disorder. Am J Med Genet 114:99–105PubMedCrossRef
81.
Zurück zum Zitat Stuhmer T, Anderson SA, Ekker M, Rubenstein KL (2002) Ectopic expression of the DLX genes induces glutamic acid decarboxylase and DLX expression. Development 129:245–252PubMed Stuhmer T, Anderson SA, Ekker M, Rubenstein KL (2002) Ectopic expression of the DLX genes induces glutamic acid decarboxylase and DLX expression. Development 129:245–252PubMed
82.
Zurück zum Zitat Soghomonian JJ, Gonzales C, Chesselet MF (1992) Messenger RNAs encoding glutamate-decarboxylases are differentially affected by nigrostriatal lesions in subpopulations of striatal neurons. Brain Res 576(1):68–79PubMedCrossRef Soghomonian JJ, Gonzales C, Chesselet MF (1992) Messenger RNAs encoding glutamate-decarboxylases are differentially affected by nigrostriatal lesions in subpopulations of striatal neurons. Brain Res 576(1):68–79PubMedCrossRef
83.
Zurück zum Zitat Soghomonian JJ (1993) Effects of neonatal 6-hydroxydopamine injections on glutamate decarboxylase, preproenkephalin and dopamine D2 receptor mRNAs in the adult rat striatum. Brain Res 621:249–259PubMedCrossRef Soghomonian JJ (1993) Effects of neonatal 6-hydroxydopamine injections on glutamate decarboxylase, preproenkephalin and dopamine D2 receptor mRNAs in the adult rat striatum. Brain Res 621:249–259PubMedCrossRef
84.
Zurück zum Zitat Soghomonian JJ, Pedneault S, Audet G, Parent A (1994) Increased glutamate decarboxylase mRNA levels in the striatum and pallidum of MPTP-treated primates. J Neurosci 14:6256–6265PubMed Soghomonian JJ, Pedneault S, Audet G, Parent A (1994) Increased glutamate decarboxylase mRNA levels in the striatum and pallidum of MPTP-treated primates. J Neurosci 14:6256–6265PubMed
85.
Zurück zum Zitat Soghomonian JJ, Laprade N (1997) Glutamate decarboxylase (GAD67 and GAD65) gene expression is increased in a subpopulation of neurons in the putamen of Parkinsonian monkeys. Synapse 27:122–132PubMedCrossRef Soghomonian JJ, Laprade N (1997) Glutamate decarboxylase (GAD67 and GAD65) gene expression is increased in a subpopulation of neurons in the putamen of Parkinsonian monkeys. Synapse 27:122–132PubMedCrossRef
86.
Zurück zum Zitat Soghomonian JJ, Martin DL (1998) Two isoforms of glutamate decarboxylase: why? Trends Pharmacol Sci 19(12):500–505PubMedCrossRef Soghomonian JJ, Martin DL (1998) Two isoforms of glutamate decarboxylase: why? Trends Pharmacol Sci 19(12):500–505PubMedCrossRef
87.
Zurück zum Zitat Teune TM, Van der Burg J, Van der Moer J, Voodg J, Ruigrok TJ (2000) Topography of cerebellar nuclear projections to the brain stem in the rat. Prog Brain Res 124:141–172PubMedCrossRef Teune TM, Van der Burg J, Van der Moer J, Voodg J, Ruigrok TJ (2000) Topography of cerebellar nuclear projections to the brain stem in the rat. Prog Brain Res 124:141–172PubMedCrossRef
88.
Zurück zum Zitat Torrey FF, Barci BM, Webster MJ, Bartko JJ, Meador-Woodruff JH, Knable MB (2005) Neurochemical markers for schizophrenia, bipolar disorder, and major depression in postmortem brains. Biol Psych 57(3):252–260CrossRef Torrey FF, Barci BM, Webster MJ, Bartko JJ, Meador-Woodruff JH, Knable MB (2005) Neurochemical markers for schizophrenia, bipolar disorder, and major depression in postmortem brains. Biol Psych 57(3):252–260CrossRef
89.
Zurück zum Zitat Volk DW, Austin MC, Pierri JN, Sampson AR, Lewis DA (2000) Decreased glutamic acid decoarbosylase 67 messenger RNA expression in a subset of prefrontal cortical gamma-aminobutyric acid neurons in subjects with schizophrenia. Arch Gen Psychiatry 57(3):237–245PubMedCrossRef Volk DW, Austin MC, Pierri JN, Sampson AR, Lewis DA (2000) Decreased glutamic acid decoarbosylase 67 messenger RNA expression in a subset of prefrontal cortical gamma-aminobutyric acid neurons in subjects with schizophrenia. Arch Gen Psychiatry 57(3):237–245PubMedCrossRef
90.
Zurück zum Zitat Walker E, McNicol AM (1992) In situ hybridization demonstrates the stability of mRNA in post mortem rat tissues. J Pathol 168(1):67–73PubMedCrossRef Walker E, McNicol AM (1992) In situ hybridization demonstrates the stability of mRNA in post mortem rat tissues. J Pathol 168(1):67–73PubMedCrossRef
91.
Zurück zum Zitat Welsh JP, Yuen G, Placantonakis DG, Vu TQ, Haiss F, O’Hearn E, Molliver ME, Aicher SA (2002) Why do Purkinje cells die so easily after global brain ischemia? Aldolase C, EAAT4 and the cerebellar contribution to post-hypoxic myoclnus. Adv Neurol 89:331–359PubMed Welsh JP, Yuen G, Placantonakis DG, Vu TQ, Haiss F, O’Hearn E, Molliver ME, Aicher SA (2002) Why do Purkinje cells die so easily after global brain ischemia? Aldolase C, EAAT4 and the cerebellar contribution to post-hypoxic myoclnus. Adv Neurol 89:331–359PubMed
92.
Zurück zum Zitat Whitney ER, Kemper TL, Bauman ML, Blatt GJ (2004) Calcium binding proteins in cerebellar Purkinje cells in autistic cerebellum. Soc Neurosci Abstr 34:116.11 Whitney ER, Kemper TL, Bauman ML, Blatt GJ (2004) Calcium binding proteins in cerebellar Purkinje cells in autistic cerebellum. Soc Neurosci Abstr 34:116.11
93.
Zurück zum Zitat Willcutts MD, Griffin WST, Morrison-Bogorad M (1989) Analysis of glutamic acid decarboxylase mRNA levels during cerebellar development in rat. Neurosci Res Commun 6:57–65 Willcutts MD, Griffin WST, Morrison-Bogorad M (1989) Analysis of glutamic acid decarboxylase mRNA levels during cerebellar development in rat. Neurosci Res Commun 6:57–65
94.
Zurück zum Zitat Willcutts MD, Morrison-Bogorad M (1991) Quantitative in situ hybridization analysis of glutamic acid decarboxylase messenger RNA in developing rat cerebellum. Dev Brain Res 63:253–164CrossRef Willcutts MD, Morrison-Bogorad M (1991) Quantitative in situ hybridization analysis of glutamic acid decarboxylase messenger RNA in developing rat cerebellum. Dev Brain Res 63:253–164CrossRef
95.
Zurück zum Zitat Woo TU, Walsh JP, Benes FM (2004) Density of glutamic acid decarboxylase 67 messenger RNA-containing neurons that express the N-methyl-d-aspartate receptor subunit NR2A in the anterior cingulate cortex in schizophrenia and bipolar disorder. Arch Gen Psychiatry 61(7):649–657PubMedCrossRef Woo TU, Walsh JP, Benes FM (2004) Density of glutamic acid decarboxylase 67 messenger RNA-containing neurons that express the N-methyl-d-aspartate receptor subunit NR2A in the anterior cingulate cortex in schizophrenia and bipolar disorder. Arch Gen Psychiatry 61(7):649–657PubMedCrossRef
96.
Zurück zum Zitat Yip J, Marcon R, Kemper TL, Bauman ML, Blatt GJ. (2005): The olivocerebellar projection in autism: using the intermediate filament protein peripherin as a marker for climbing fibers. International Meeting for Autism Res Abstr (IMFAR) 5:49 Yip J, Marcon R, Kemper TL, Bauman ML, Blatt GJ. (2005): The olivocerebellar projection in autism: using the intermediate filament protein peripherin as a marker for climbing fibers. International Meeting for Autism Res Abstr (IMFAR) 5:49
97.
Zurück zum Zitat Yip J, Soghomonian JJ, Bauman M, Kemper T, Blatt GJ (2006) Functional status of the cerebellar Purkinje cells in autistic brains. International Meeting for Autism Research (IMFAR) 5:142 Yip J, Soghomonian JJ, Bauman M, Kemper T, Blatt GJ (2006) Functional status of the cerebellar Purkinje cells in autistic brains. International Meeting for Autism Research (IMFAR) 5:142
Metadaten
Titel
Decreased GAD67 mRNA levels in cerebellar Purkinje cells in autism: pathophysiological implications
verfasst von
Jane Yip
Jean-Jacques Soghomonian
Gene J. Blatt
Publikationsdatum
01.05.2007
Verlag
Springer-Verlag
Erschienen in
Acta Neuropathologica / Ausgabe 5/2007
Print ISSN: 0001-6322
Elektronische ISSN: 1432-0533
DOI
https://doi.org/10.1007/s00401-006-0176-3

Weitere Artikel der Ausgabe 5/2007

Acta Neuropathologica 5/2007 Zur Ausgabe

Leitlinien kompakt für die Neurologie

Mit medbee Pocketcards sicher entscheiden.

Seit 2022 gehört die medbee GmbH zum Springer Medizin Verlag

Hirnblutung unter DOAK und VKA ähnlich bedrohlich

17.05.2024 Direkte orale Antikoagulanzien Nachrichten

Kommt es zu einer nichttraumatischen Hirnblutung, spielt es keine große Rolle, ob die Betroffenen zuvor direkt wirksame orale Antikoagulanzien oder Marcumar bekommen haben: Die Prognose ist ähnlich schlecht.

Thrombektomie auch bei großen Infarkten von Vorteil

16.05.2024 Ischämischer Schlaganfall Nachrichten

Auch ein sehr ausgedehnter ischämischer Schlaganfall scheint an sich kein Grund zu sein, von einer mechanischen Thrombektomie abzusehen. Dafür spricht die LASTE-Studie, an der Patienten und Patientinnen mit einem ASPECTS von maximal 5 beteiligt waren.

Schwindelursache: Massagepistole lässt Otholiten tanzen

14.05.2024 Benigner Lagerungsschwindel Nachrichten

Wenn jüngere Menschen über ständig rezidivierenden Lagerungsschwindel klagen, könnte eine Massagepistole der Auslöser sein. In JAMA Otolaryngology warnt ein Team vor der Anwendung hochpotenter Geräte im Bereich des Nackens.

Schützt Olivenöl vor dem Tod durch Demenz?

10.05.2024 Morbus Alzheimer Nachrichten

Konsumieren Menschen täglich 7 Gramm Olivenöl, ist ihr Risiko, an einer Demenz zu sterben, um mehr als ein Viertel reduziert – und dies weitgehend unabhängig von ihrer sonstigen Ernährung. Dafür sprechen Auswertungen zweier großer US-Studien.

Update Neurologie

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.