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Erschienen in: Acta Neuropathologica 1/2016

07.03.2016 | Original Paper

ECEL1 mutation implicates impaired axonal arborization of motor nerves in the pathogenesis of distal arthrogryposis

verfasst von: Kenichi Nagata, Sumiko Kiryu-Seo, Hiromi Tamada, Fumi Okuyama-Uchimura, Hiroshi Kiyama, Takaomi C. Saido

Erschienen in: Acta Neuropathologica | Ausgabe 1/2016

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Abstract

The membrane-bound metalloprotease endothelin-converting enzyme-like 1 (ECEL1) has been newly identified as a causal gene of a specific type of distal arthrogryposis (DA). In contrast to most causal genes of DA, ECEL1 is predominantly expressed in neuronal cells, suggesting a unique neurogenic pathogenesis in a subset of DA patients with ECEL1 mutation. The present study analyzed developmental motor innervation and neuromuscular junction formation in limbs of the rodent homologue damage-induced neuronal endopeptidase (DINE)-deficient mouse. Whole-mount immunostaining was performed in DINE-deficient limbs expressing motoneuron-specific GFP to visualize motor innervation throughout the limb. Although DINE-deficient motor nerves displayed normal trajectory patterns from the spinal cord to skeletal muscles, they indicated impaired axonal arborization in skeletal muscles in the forelimbs and hindlimbs. Systematic examination of motor innervation in over 10 different hindlimb muscles provided evidence that DINE gene disruption leads to insufficient arborization of motor nerves after arriving at the skeletal muscle. Interestingly, the axonal arborization defect in foot muscles appeared more severe than in other hindlimb muscles, which was partially consistent with the proximal–distal phenotypic discordance observed in DA patients. Additionally, the number of innervated neuromuscular junction was significantly reduced in the severely affected DINE-deficient muscle. Furthermore, we generated a DINE knock-in (KI) mouse model with a pathogenic mutation, which was recently identified in DA patients. Axonal arborization defects were clearly detected in motor nerves of the DINE KI limb, which was identical to the DINE-deficient limb. Given that the encoded sequences, as well as ECEL1 and DINE expression profiles, are highly conserved between mouse and human, abnormal arborization of motor axons and subsequent failure of NMJ formation could be a primary cause of DA with ECEL1 mutation.
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Literatur
1.
Zurück zum Zitat Bamshad M, Jorde LB, Carey JC (1996) A revised and extended classification of the distal arthrogryposes. Am J Med Genet 65:277–281CrossRefPubMed Bamshad M, Jorde LB, Carey JC (1996) A revised and extended classification of the distal arthrogryposes. Am J Med Genet 65:277–281CrossRefPubMed
3.
Zurück zum Zitat Barnett CP, Todd EJ, Ong R, Davis MR, Atkinson V, Allcock R, Laing N, Ravenscroft G (2014) Distal arthrogryposis type 5D with novel clinical features and compound heterozygous mutations in ECEL1. Am J Med Genet A 164:1846–1849CrossRef Barnett CP, Todd EJ, Ong R, Davis MR, Atkinson V, Allcock R, Laing N, Ravenscroft G (2014) Distal arthrogryposis type 5D with novel clinical features and compound heterozygous mutations in ECEL1. Am J Med Genet A 164:1846–1849CrossRef
4.
Zurück zum Zitat Beals RK, Weleber RG (2004) Distal arthrogryposis 5: a dominant syndrome of peripheral contractures and ophthalmoplegia. Am J Med Genet A 131:67–70CrossRefPubMed Beals RK, Weleber RG (2004) Distal arthrogryposis 5: a dominant syndrome of peripheral contractures and ophthalmoplegia. Am J Med Genet A 131:67–70CrossRefPubMed
6.
Zurück zum Zitat Burgess RW, Jucius TJ, Ackerman SL (2006) Motor axon guidance of the mammalian trochlear and phrenic nerves: dependence on the netrin receptor Unc5c and modifier loci. J Neurosci 26:5756–5766CrossRefPubMed Burgess RW, Jucius TJ, Ackerman SL (2006) Motor axon guidance of the mammalian trochlear and phrenic nerves: dependence on the netrin receptor Unc5c and modifier loci. J Neurosci 26:5756–5766CrossRefPubMed
8.
Zurück zum Zitat De Marco Garcia NV, Jessell TM (2008) Early motor neuron pool identity and muscle nerve trajectory defined by postmitotic restrictions in Nkx6.1 activity. Neuron 57:217–231CrossRefPubMedPubMedCentral De Marco Garcia NV, Jessell TM (2008) Early motor neuron pool identity and muscle nerve trajectory defined by postmitotic restrictions in Nkx6.1 activity. Neuron 57:217–231CrossRefPubMedPubMedCentral
9.
Zurück zum Zitat Dieterich K, Quijano-Roy S, Monnier N, Zhou J, Faure J, Smirnow DA, Carlier R, Laroche C, Marcorelles P, Mercier S et al (2013) The neuronal endopeptidase ECEL1 is associated with a distinct form of recessive distal arthrogryposis. Hum Mol Genet 22:1483–1492CrossRefPubMed Dieterich K, Quijano-Roy S, Monnier N, Zhou J, Faure J, Smirnow DA, Carlier R, Laroche C, Marcorelles P, Mercier S et al (2013) The neuronal endopeptidase ECEL1 is associated with a distinct form of recessive distal arthrogryposis. Hum Mol Genet 22:1483–1492CrossRefPubMed
10.
Zurück zum Zitat Gurnett CA, Desruisseau DM, McCall K, Choi R, Meyer ZI, Talerico M, Miller SE, Ju JS, Pestronk A, Connolly AM et al (2010) Myosin binding protein C1: a novel gene for autosomal dominant distal arthrogryposis type 1. Hum Mol Genet 19:1165–1173CrossRefPubMedPubMedCentral Gurnett CA, Desruisseau DM, McCall K, Choi R, Meyer ZI, Talerico M, Miller SE, Ju JS, Pestronk A, Connolly AM et al (2010) Myosin binding protein C1: a novel gene for autosomal dominant distal arthrogryposis type 1. Hum Mol Genet 19:1165–1173CrossRefPubMedPubMedCentral
11.
Zurück zum Zitat Hall JG, Reed SD, Greene G (1982) The distal arthrogryposes: delineation of new entities–review and nosologic discussion. Am J Med Genet 11:185–239CrossRefPubMed Hall JG, Reed SD, Greene G (1982) The distal arthrogryposes: delineation of new entities–review and nosologic discussion. Am J Med Genet 11:185–239CrossRefPubMed
12.
Zurück zum Zitat Huber AB, Kania A, Tran TS, Gu C, De Marco Garcia N, Lieberam I, Johnson D, Jessell TM, Ginty DD, Kolodkin AL (2005) Distinct roles for secreted semaphorin signaling in spinal motor axon guidance. Neuron 48:949–964CrossRefPubMed Huber AB, Kania A, Tran TS, Gu C, De Marco Garcia N, Lieberam I, Johnson D, Jessell TM, Ginty DD, Kolodkin AL (2005) Distinct roles for secreted semaphorin signaling in spinal motor axon guidance. Neuron 48:949–964CrossRefPubMed
14.
Zurück zum Zitat Kato R, Kiryu-Seo S, Kiyama H (2002) Damage-induced neuronal endopeptidase (DINE/ECEL) expression is regulated by leukemia inhibitory factor and deprivation of nerve growth factor in rat sensory ganglia after nerve injury. J Neurosci 22:9410–9418PubMed Kato R, Kiryu-Seo S, Kiyama H (2002) Damage-induced neuronal endopeptidase (DINE/ECEL) expression is regulated by leukemia inhibitory factor and deprivation of nerve growth factor in rat sensory ganglia after nerve injury. J Neurosci 22:9410–9418PubMed
15.
Zurück zum Zitat Keane TM, Goodstadt L, Danecek P, White MA, Wong K, Yalcin B, Heger A, Agam A, Slater G, Goodson M et al (2011) Mouse genomic variation and its effect on phenotypes and gene regulation. Nature 477:289–294CrossRefPubMedPubMedCentral Keane TM, Goodstadt L, Danecek P, White MA, Wong K, Yalcin B, Heger A, Agam A, Slater G, Goodson M et al (2011) Mouse genomic variation and its effect on phenotypes and gene regulation. Nature 477:289–294CrossRefPubMedPubMedCentral
16.
Zurück zum Zitat Khan AO, Shaheen R, Alkuraya FS (2014) The ECEL1-related strabismus phenotype is consistent with congenital cranial dysinnervation disorder. J Aapos 18:362–367CrossRefPubMed Khan AO, Shaheen R, Alkuraya FS (2014) The ECEL1-related strabismus phenotype is consistent with congenital cranial dysinnervation disorder. J Aapos 18:362–367CrossRefPubMed
17.
Zurück zum Zitat Kiryu-Seo S, Sasaki M, Yokohama H, Nakagomi S, Hirayama T, Aoki S, Wada K, Kiyama H (2000) Damage-induced neuronal endopeptidase (DINE) is a unique metallopeptidase expressed in response to neuronal damage and activates superoxide scavengers. Proc Natl Acad Sci USA 97:4345–4350CrossRefPubMedPubMedCentral Kiryu-Seo S, Sasaki M, Yokohama H, Nakagomi S, Hirayama T, Aoki S, Wada K, Kiyama H (2000) Damage-induced neuronal endopeptidase (DINE) is a unique metallopeptidase expressed in response to neuronal damage and activates superoxide scavengers. Proc Natl Acad Sci USA 97:4345–4350CrossRefPubMedPubMedCentral
18.
Zurück zum Zitat MacLeod KJ, Fuller RS, Scholten JD, Ahn K (2001) Conserved cysteine and tryptophan residues of the endothelin-converting enzyme-1 CXAW motif are critical for protein maturation and enzyme activity. J Biol Chem 276:30608–30614. doi:10.1074/jbc.M103928200 CrossRefPubMed MacLeod KJ, Fuller RS, Scholten JD, Ahn K (2001) Conserved cysteine and tryptophan residues of the endothelin-converting enzyme-1 CXAW motif are critical for protein maturation and enzyme activity. J Biol Chem 276:30608–30614. doi:10.​1074/​jbc.​M103928200 CrossRefPubMed
19.
Zurück zum Zitat McMillin MJ, Below JE, Shively KM, Beck AE, Gildersleeve HI, Pinner J, Gogola GR, Hecht JT, Grange DK, Harris DJ et al (2013) Mutations in ECEL1 cause distal arthrogryposis type 5D. Am J Hum Genet 92:150–156CrossRefPubMedPubMedCentral McMillin MJ, Below JE, Shively KM, Beck AE, Gildersleeve HI, Pinner J, Gogola GR, Hecht JT, Grange DK, Harris DJ et al (2013) Mutations in ECEL1 cause distal arthrogryposis type 5D. Am J Hum Genet 92:150–156CrossRefPubMedPubMedCentral
20.
Zurück zum Zitat Nagata K, Kiryu-Seo S, Kiyama H (2006) Localization and ontogeny of damage-induced neuronal endopeptidase mRNA-expressing neurons in the rat nervous system. Neuroscience 141:299–310CrossRefPubMed Nagata K, Kiryu-Seo S, Kiyama H (2006) Localization and ontogeny of damage-induced neuronal endopeptidase mRNA-expressing neurons in the rat nervous system. Neuroscience 141:299–310CrossRefPubMed
21.
Zurück zum Zitat Nagata K, Kiryu-Seo S, Maeda M, Yoshida K, Morita T, Kiyama H (2010) Damage-induced neuronal endopeptidase is critical for presynaptic formation of neuromuscular junctions. J Neurosci 30:6954–6962CrossRefPubMed Nagata K, Kiryu-Seo S, Maeda M, Yoshida K, Morita T, Kiyama H (2010) Damage-induced neuronal endopeptidase is critical for presynaptic formation of neuromuscular junctions. J Neurosci 30:6954–6962CrossRefPubMed
22.
Zurück zum Zitat Ohba N, Kiryu-Seo S, Maeda M, Muraoka M, Ishii M, Kiyama H (2004) Expression of damage-induced neuronal endopeptidase (DINE) mRNA in peri-infarct cortical and thalamic neurons following middle cerebral artery occlusion. J Neurochem 91:956–964CrossRefPubMed Ohba N, Kiryu-Seo S, Maeda M, Muraoka M, Ishii M, Kiyama H (2004) Expression of damage-induced neuronal endopeptidase (DINE) mRNA in peri-infarct cortical and thalamic neurons following middle cerebral artery occlusion. J Neurochem 91:956–964CrossRefPubMed
23.
Zurück zum Zitat Patil SJ, Rai GK, Bhat V, Ramesh VA, Nagarajaram HA, Matalia J, Phadke SR (2014) Distal arthrogryposis type 5D with a novel ECEL1 gene mutation. Am J Med Genet A 164:2857–2862CrossRef Patil SJ, Rai GK, Bhat V, Ramesh VA, Nagarajaram HA, Matalia J, Phadke SR (2014) Distal arthrogryposis type 5D with a novel ECEL1 gene mutation. Am J Med Genet A 164:2857–2862CrossRef
24.
Zurück zum Zitat Pun S, Sigrist M, Santos AF, Ruegg MA, Sanes JR, Jessell TM, Arber S, Caroni P (2002) An intrinsic distinction in neuromuscular junction assembly and maintenance in different skeletal muscles. Neuron 34:357–370CrossRefPubMed Pun S, Sigrist M, Santos AF, Ruegg MA, Sanes JR, Jessell TM, Arber S, Caroni P (2002) An intrinsic distinction in neuromuscular junction assembly and maintenance in different skeletal muscles. Neuron 34:357–370CrossRefPubMed
25.
Zurück zum Zitat Qiu P, Shandilya H, D’Alessio JM, O’Connor K, Durocher J, Gerard GF (2004) Mutation detection using surveyor nuclease. Biotechniques 36:702–707PubMed Qiu P, Shandilya H, D’Alessio JM, O’Connor K, Durocher J, Gerard GF (2004) Mutation detection using surveyor nuclease. Biotechniques 36:702–707PubMed
26.
Zurück zum Zitat Schweizer A, Valdenaire O, Koster A, Lang Y, Schmitt G, Lenz B, Bluethmann H, Rohrer J (1999) Neonatal lethality in mice deficient in XCE, a novel member of the endothelin-converting enzyme and neutral endopeptidase family. J Biol Chem 274:20450–20456CrossRefPubMed Schweizer A, Valdenaire O, Koster A, Lang Y, Schmitt G, Lenz B, Bluethmann H, Rohrer J (1999) Neonatal lethality in mice deficient in XCE, a novel member of the endothelin-converting enzyme and neutral endopeptidase family. J Biol Chem 274:20450–20456CrossRefPubMed
27.
Zurück zum Zitat Shaaban S, Duzcan F, Yildirim C, Chan WM, Andrews C, Akarsu NA, Engle EC (2014) Expanding the phenotypic spectrum of ECEL1-related congenital contracture syndromes. Clin Genet 85:562–567CrossRefPubMed Shaaban S, Duzcan F, Yildirim C, Chan WM, Andrews C, Akarsu NA, Engle EC (2014) Expanding the phenotypic spectrum of ECEL1-related congenital contracture syndromes. Clin Genet 85:562–567CrossRefPubMed
28.
Zurück zum Zitat Shaheen R, Al-Owain M, Khan AO, Zaki MS, Hossni HA, Al-Tassan R, Eyaid W, Alkuraya FS (2014) Identification of three novel ECEL1 mutations in three families with distal arthrogryposis type 5D. Clin Genet 85:568–572CrossRefPubMed Shaheen R, Al-Owain M, Khan AO, Zaki MS, Hossni HA, Al-Tassan R, Eyaid W, Alkuraya FS (2014) Identification of three novel ECEL1 mutations in three families with distal arthrogryposis type 5D. Clin Genet 85:568–572CrossRefPubMed
29.
Zurück zum Zitat Sung SS, Brassington AM, Krakowiak PA, Carey JC, Jorde LB, Bamshad M (2003) Mutations in TNNT3 cause multiple congenital contractures: a second locus for distal arthrogryposis type 2B. Am J Hum Genet 73:212–214CrossRefPubMedPubMedCentral Sung SS, Brassington AM, Krakowiak PA, Carey JC, Jorde LB, Bamshad M (2003) Mutations in TNNT3 cause multiple congenital contractures: a second locus for distal arthrogryposis type 2B. Am J Hum Genet 73:212–214CrossRefPubMedPubMedCentral
30.
Zurück zum Zitat Toydemir RM, Rutherford A, Whitby FG, Jorde LB, Carey JC, Bamshad MJ (2006) Mutations in embryonic myosin heavy chain (MYH3) cause Freeman-Sheldon syndrome and Sheldon-Hall syndrome. Nat Genet 38:561–565CrossRefPubMed Toydemir RM, Rutherford A, Whitby FG, Jorde LB, Carey JC, Bamshad MJ (2006) Mutations in embryonic myosin heavy chain (MYH3) cause Freeman-Sheldon syndrome and Sheldon-Hall syndrome. Nat Genet 38:561–565CrossRefPubMed
31.
Zurück zum Zitat Valdenaire O, Richards JG, Faull RL, Schweizer A (1999) XCE, a new member of the endothelin-converting enzyme and neutral endopeptidase family, is preferentially expressed in the CNS. Brain Res Mol Brain Res 64:211–221CrossRefPubMed Valdenaire O, Richards JG, Faull RL, Schweizer A (1999) XCE, a new member of the endothelin-converting enzyme and neutral endopeptidase family, is preferentially expressed in the CNS. Brain Res Mol Brain Res 64:211–221CrossRefPubMed
32.
Zurück zum Zitat Wichterle H, Lieberam I, Porter JA, Jessell TM (2002) Directed differentiation of embryonic stem cells into motor neurons. Cell 110:385–397CrossRefPubMed Wichterle H, Lieberam I, Porter JA, Jessell TM (2002) Directed differentiation of embryonic stem cells into motor neurons. Cell 110:385–397CrossRefPubMed
33.
Zurück zum Zitat Williams MS, Elliott CG, Bamshad MJ (2007) Pulmonary disease is a component of distal arthrogryposis type 5. Am J Med Genet A 143A:752–756CrossRefPubMed Williams MS, Elliott CG, Bamshad MJ (2007) Pulmonary disease is a component of distal arthrogryposis type 5. Am J Med Genet A 143A:752–756CrossRefPubMed
Metadaten
Titel
ECEL1 mutation implicates impaired axonal arborization of motor nerves in the pathogenesis of distal arthrogryposis
verfasst von
Kenichi Nagata
Sumiko Kiryu-Seo
Hiromi Tamada
Fumi Okuyama-Uchimura
Hiroshi Kiyama
Takaomi C. Saido
Publikationsdatum
07.03.2016
Verlag
Springer Berlin Heidelberg
Erschienen in
Acta Neuropathologica / Ausgabe 1/2016
Print ISSN: 0001-6322
Elektronische ISSN: 1432-0533
DOI
https://doi.org/10.1007/s00401-016-1554-0

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