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Erschienen in: Journal of Inherited Metabolic Disease 1/2011

01.02.2011 | Homocysteine and B-Vitamin Metabolism

Complete deficiency of methylenetetrahydrofolate reductase in mice is associated with impaired retinal function and variable mortality, hematological profiles, and reproductive outcomes

verfasst von: Andrea K. Lawrance, Julie Racine, Liyuan Deng, Xiaoling Wang, Pierre Lachapelle, Rima Rozen

Erschienen in: Journal of Inherited Metabolic Disease | Ausgabe 1/2011

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Abstract

Severe deficiency of methylenetetrahydrofolate reductase (MTHFR) with homocystinuria can result in early demise or later-onset neurological impairment, including developmental delay, motor dysfunction, and seizures. We previously characterized BALB/c Mthfr −/−mice as a model for this disorder and have recently backcrossed the disrupted allele onto the C57Bl/6 background to examine the variable phenotypes in MTHFR deficiency. Compared with BALB/c Mthfr −/−mice, C57Bl/6 Mthfr −/−mice have enhanced survival rates (81% vs 26.5%). Four-day-old BALB/c mutant pups had lower body, brain, and spleen weights relative to their wild-type counterparts compared with C57Bl/6 mutants. Pregnant BALB/c Mthfr +/−mice had increased resorptions and embryonic delays compared with wild-type littermates, whereas these outcomes in C57Bl/6 c Mthfr +/−mice were similar to those of wild-type C57Bl/6 mice. BALB/c-mutant pups had altered hematological profiles (higher hematocrit, hemoglobin, and white blood cell counts, with lower platelet counts) compared with C57Bl/6 mutants. Mutants of both strains had similar degrees of hepatic steatosis, hepatic activity of betaine:homocysteine methyltransferase, and altered cerebellar histology. Electroretinograms (ERG) in C57Bl/6 Mthfr −/−mice revealed decreased amplitude of scotopic and photopic waves in 6-week-old mice, with normalized ERGs at 13 weeks. Plasma homocysteine was modestly higher in C57Bl/6 compared with BALB/c mice. Our results emphasize the variable presentation of MTHFR deficiency in different genetic backgrounds and suggest that plasma homocysteine is not a predictor of severity. In addition, our novel findings of decreased spleen weights, thrombocytopenia, and impaired retinal function warrant investigation in patients with severe MTHFR deficiency or other forms of homocystinuria.
Literatur
Zurück zum Zitat Belcastro V, Striano P, Caccamo D, Costa C, Pisani LR, Trombetta CJ, Maddaloni A, Ciampa C, Reccia R, Ientile R, Striano S, Calabresi P, Pisani F (2008) Hyperhomocysteinemia and retinal vascular changes in patients with epilepsy. Epilepsy Res 81:86–89CrossRefPubMed Belcastro V, Striano P, Caccamo D, Costa C, Pisani LR, Trombetta CJ, Maddaloni A, Ciampa C, Reccia R, Ientile R, Striano S, Calabresi P, Pisani F (2008) Hyperhomocysteinemia and retinal vascular changes in patients with epilepsy. Epilepsy Res 81:86–89CrossRefPubMed
Zurück zum Zitat Cayouette M, Behn D, Sendtner M, Lachapelle P, Gravel C (1998) Intraocular gene transfer of ciliary neurotrophic factor prevents death and increases responsiveness of rod photoreceptors in the retinal degeneration slow mouse. J Neurosci 18:9282–9293PubMed Cayouette M, Behn D, Sendtner M, Lachapelle P, Gravel C (1998) Intraocular gene transfer of ciliary neurotrophic factor prevents death and increases responsiveness of rod photoreceptors in the retinal degeneration slow mouse. J Neurosci 18:9282–9293PubMed
Zurück zum Zitat Chen Z, Karaplis AC, Ackerman SL, Pogribny IP, Melnyk S, Lussier-Cacan S, Chen MF, Pai A, John SW, Smith RS, Bottiglieri T, Bagley P, Selhub J, Rudnicki MA, James SJ, Rozen R (2001) Mice deficient in methylenetetrahydrofolate reductase exhibit hyperhomocysteinemia and decreased methylation capacity, with neuropathology and aortic lipid deposition. Hum Mol Genet 10:433–443CrossRefPubMed Chen Z, Karaplis AC, Ackerman SL, Pogribny IP, Melnyk S, Lussier-Cacan S, Chen MF, Pai A, John SW, Smith RS, Bottiglieri T, Bagley P, Selhub J, Rudnicki MA, James SJ, Rozen R (2001) Mice deficient in methylenetetrahydrofolate reductase exhibit hyperhomocysteinemia and decreased methylation capacity, with neuropathology and aortic lipid deposition. Hum Mol Genet 10:433–443CrossRefPubMed
Zurück zum Zitat Chen Z, Schwahn BC, Wu Q, He X, Rozen R (2005) Postnatal cerebellar defects in mice deficient in methylenetetrahydrofolate reductase. Int J Dev Neurosci 23:465–474CrossRefPubMed Chen Z, Schwahn BC, Wu Q, He X, Rozen R (2005) Postnatal cerebellar defects in mice deficient in methylenetetrahydrofolate reductase. Int J Dev Neurosci 23:465–474CrossRefPubMed
Zurück zum Zitat Dorfman AL, Polosa A, Joly S, Chemtob S, Lachapelle P (2009) Functional and structural changes resulting from strain differences in the rat model of oxygen-induced retinopathy. Invest Ophthalmol Vis Sci 50:2436–2450CrossRefPubMed Dorfman AL, Polosa A, Joly S, Chemtob S, Lachapelle P (2009) Functional and structural changes resulting from strain differences in the rat model of oxygen-induced retinopathy. Invest Ophthalmol Vis Sci 50:2436–2450CrossRefPubMed
Zurück zum Zitat Durand P, Fortin LJ, Lussier-Cacan S, Davignon J, Blache D (1996) Hyperhomocysteinemia induced by folic acid deficiency and methionine load-applications of a modified HPLC method. Clin Chim Acta 252:83–93CrossRefPubMed Durand P, Fortin LJ, Lussier-Cacan S, Davignon J, Blache D (1996) Hyperhomocysteinemia induced by folic acid deficiency and methionine load-applications of a modified HPLC method. Clin Chim Acta 252:83–93CrossRefPubMed
Zurück zum Zitat Frosst P, Blom HJ, Milos R, Goyette P, Sheppard CA, Matthews RG, Boers GJ, den Heijer M, Kluijtmans LA, van den Heuvel LP et al (1995) A candidate genetic risk factor for vascular disease: a common mutation in methylenetetrahydrofolate reductase. Nat Genet 10:111–113CrossRefPubMed Frosst P, Blom HJ, Milos R, Goyette P, Sheppard CA, Matthews RG, Boers GJ, den Heijer M, Kluijtmans LA, van den Heuvel LP et al (1995) A candidate genetic risk factor for vascular disease: a common mutation in methylenetetrahydrofolate reductase. Nat Genet 10:111–113CrossRefPubMed
Zurück zum Zitat Garrow TA (1996) Purification, kinetic properties, and cDNA cloning of mammalian betaine-homocysteine methyltransferase. J Biol Chem 271:22831–22838PubMed Garrow TA (1996) Purification, kinetic properties, and cDNA cloning of mammalian betaine-homocysteine methyltransferase. J Biol Chem 271:22831–22838PubMed
Zurück zum Zitat Ghandour H, Chen Z, Selhub J, Rozen R (2004) Mice deficient in methylenetetrahydrofolate reductase exhibit tissue-specific distribution of folates. J Nutr 134:2975–2978PubMed Ghandour H, Chen Z, Selhub J, Rozen R (2004) Mice deficient in methylenetetrahydrofolate reductase exhibit tissue-specific distribution of folates. J Nutr 134:2975–2978PubMed
Zurück zum Zitat Goyette P, Frosst P, Rosenblatt DS, Rozen R (1995) Seven novel mutations in the methylenetetrahydrofolate reductase gene and genotype/phenotype correlations in severe methylenetetrahydrofolate reductase deficiency. Am J Hum Genet 56:1052–1059PubMed Goyette P, Frosst P, Rosenblatt DS, Rozen R (1995) Seven novel mutations in the methylenetetrahydrofolate reductase gene and genotype/phenotype correlations in severe methylenetetrahydrofolate reductase deficiency. Am J Hum Genet 56:1052–1059PubMed
Zurück zum Zitat Goyette P, Christensen B, Rosenblatt DS, Rozen R (1996) Severe and mild mutations in cis for the methylenetetrahydrofolate reductase (MTHFR) gene, and description of five novel mutations in MTHFR. Am J Hum Genet 59:1268–1275PubMed Goyette P, Christensen B, Rosenblatt DS, Rozen R (1996) Severe and mild mutations in cis for the methylenetetrahydrofolate reductase (MTHFR) gene, and description of five novel mutations in MTHFR. Am J Hum Genet 59:1268–1275PubMed
Zurück zum Zitat Haworth JC, Dilling LA, Surtees RA, Seargeant LE, Lue-Shing H, Cooper BA, Rosenblatt DS (1993) Symptomatic and asymptomatic methylenetetrahydrofolate reductase deficiency in two adult brothers. Am J Med Genet 45:572–576CrossRefPubMed Haworth JC, Dilling LA, Surtees RA, Seargeant LE, Lue-Shing H, Cooper BA, Rosenblatt DS (1993) Symptomatic and asymptomatic methylenetetrahydrofolate reductase deficiency in two adult brothers. Am J Med Genet 45:572–576CrossRefPubMed
Zurück zum Zitat Kelly TL, Neaga OR, Schwahn BC, Rozen R, Trasler JM (2005) Infertility in 5, 10-methylenetetrahydrofolate reductase (MTHFR)-deficient male mice is partially alleviated by lifetime dietary betaine supplementation. Biol Reprod 72:667–677CrossRefPubMed Kelly TL, Neaga OR, Schwahn BC, Rozen R, Trasler JM (2005) Infertility in 5, 10-methylenetetrahydrofolate reductase (MTHFR)-deficient male mice is partially alleviated by lifetime dietary betaine supplementation. Biol Reprod 72:667–677CrossRefPubMed
Zurück zum Zitat Knock E, Deng L, Wu Q, Lawrance AK, Wang XL, Rozen R (2008) Strain differences in mice highlight the role of DNA damage in neoplasia induced by low dietary folate. J Nutr 138:653–658PubMed Knock E, Deng L, Wu Q, Lawrance AK, Wang XL, Rozen R (2008) Strain differences in mice highlight the role of DNA damage in neoplasia induced by low dietary folate. J Nutr 138:653–658PubMed
Zurück zum Zitat Lattanzio R, Sampietro F, Ramoni A, Fattorini A, Brancato R, D'Angelo A (2006) Moderate hyperhomocysteinemia and early-onset central retinal vein occlusion. Retina 26:65–70CrossRefPubMed Lattanzio R, Sampietro F, Ramoni A, Fattorini A, Brancato R, D'Angelo A (2006) Moderate hyperhomocysteinemia and early-onset central retinal vein occlusion. Retina 26:65–70CrossRefPubMed
Zurück zum Zitat Lee I, Lee H, Kim JM, Chae EH, Kim SJ, Chang N (2007) Short-term hyperhomocysteinemia-induced oxidative stress activates retinal glial cells and increases vascular endothelial growth factor expression in rat retina. Biosci Biotechnol Biochem 71:1203–1210CrossRefPubMed Lee I, Lee H, Kim JM, Chae EH, Kim SJ, Chang N (2007) Short-term hyperhomocysteinemia-induced oxidative stress activates retinal glial cells and increases vascular endothelial growth factor expression in rat retina. Biosci Biotechnol Biochem 71:1203–1210CrossRefPubMed
Zurück zum Zitat Li D, Pickell L, Liu Y, Wu Q, Cohn JS, Rozen R (2005) Maternal methylenetetrahydrofolate reductase deficiency and low dietary folate lead to adverse reproductive outcomes and congenital heart defects in mice. Am J Clin Nutr 82:188–195PubMed Li D, Pickell L, Liu Y, Wu Q, Cohn JS, Rozen R (2005) Maternal methylenetetrahydrofolate reductase deficiency and low dietary folate lead to adverse reproductive outcomes and congenital heart defects in mice. Am J Clin Nutr 82:188–195PubMed
Zurück zum Zitat Li D, Karp N, Wu Q, Wang XL, Melnyk S, James SJ, Rozen R (2008) Mefolinate (5-methyltetrahydrofolate), but not folic acid, decreases mortality in an animal model of severe methylenetetrahydrofolate reductase deficiency. J Inherit Metab Dis 31:403–411CrossRefPubMed Li D, Karp N, Wu Q, Wang XL, Melnyk S, James SJ, Rozen R (2008) Mefolinate (5-methyltetrahydrofolate), but not folic acid, decreases mortality in an animal model of severe methylenetetrahydrofolate reductase deficiency. J Inherit Metab Dis 31:403–411CrossRefPubMed
Zurück zum Zitat Lipton SA, Kim WK, Choi YB, Kumar S, D'Emilia DM, Rayudu PV, Arnelle DR, Stamler JS (1997) Neurotoxicity associated with dual actions of homocysteine at the N-methyl-D-aspartate receptor. Proc Natl Acad Sci U S A 94:5923–5928CrossRefPubMed Lipton SA, Kim WK, Choi YB, Kumar S, D'Emilia DM, Rayudu PV, Arnelle DR, Stamler JS (1997) Neurotoxicity associated with dual actions of homocysteine at the N-methyl-D-aspartate receptor. Proc Natl Acad Sci U S A 94:5923–5928CrossRefPubMed
Zurück zum Zitat Mohan IV, Jagroop IA, Mikhailidis DP, Stansby GP (2008) Homocysteine activates platelets in vitro. Clin Appl Thromb Hemost 14:8–18CrossRefPubMed Mohan IV, Jagroop IA, Mikhailidis DP, Stansby GP (2008) Homocysteine activates platelets in vitro. Clin Appl Thromb Hemost 14:8–18CrossRefPubMed
Zurück zum Zitat Moore P, El-sherbeny A, Roon P, Schoenlein PV, Ganapathy V, Smith SB (2001) Apoptotic cell death in the mouse retinal ganglion cell layer is induced in vivo by the excitatory amino acid homocysteine. Exp Eye Res 73:45–57CrossRefPubMed Moore P, El-sherbeny A, Roon P, Schoenlein PV, Ganapathy V, Smith SB (2001) Apoptotic cell death in the mouse retinal ganglion cell layer is induced in vivo by the excitatory amino acid homocysteine. Exp Eye Res 73:45–57CrossRefPubMed
Zurück zum Zitat Pickell L, Li D, Brown K, Mikael LG, Wang XL, Wu Q, Luo L, Jerome-Majewska L, Rozen R (2009) Methylenetetrahydrofolate reductase deficiency and low dietary folate increase embryonic delay and placental abnormalities in mice. Birth Defects Res A Clin Mol Teratol 85:531–541CrossRefPubMed Pickell L, Li D, Brown K, Mikael LG, Wang XL, Wu Q, Luo L, Jerome-Majewska L, Rozen R (2009) Methylenetetrahydrofolate reductase deficiency and low dietary folate increase embryonic delay and placental abnormalities in mice. Birth Defects Res A Clin Mol Teratol 85:531–541CrossRefPubMed
Zurück zum Zitat Poloschek CM, Fowler B, Unsold R, Lorenz B (2005) Disturbed visual system function in methionine synthase deficiency. Graefes Arch Clin Exp Ophthalmol 243:497–500CrossRefPubMed Poloschek CM, Fowler B, Unsold R, Lorenz B (2005) Disturbed visual system function in methionine synthase deficiency. Graefes Arch Clin Exp Ophthalmol 243:497–500CrossRefPubMed
Zurück zum Zitat Quere I, Gris JC, Dauzat M (2005) Homocysteine and venous thrombosis. Semin Vasc Med 5:183–189CrossRefPubMed Quere I, Gris JC, Dauzat M (2005) Homocysteine and venous thrombosis. Semin Vasc Med 5:183–189CrossRefPubMed
Zurück zum Zitat Racine J, Behn D, Lachapelle P (2008) Structural and functional maturation of the retina of the albino Hartley guinea pig. Doc Ophthalmol 117:13–26CrossRefPubMed Racine J, Behn D, Lachapelle P (2008) Structural and functional maturation of the retina of the albino Hartley guinea pig. Doc Ophthalmol 117:13–26CrossRefPubMed
Zurück zum Zitat Reish O, Townsend D, Berry SA, Tsai MY, King RA (1995) Tyrosinase inhibition due to interaction of homocyst(e)ine with copper: the mechanism for reversible hypopigmentation in homocystinuria due to cystathionine beta-synthase deficiency. Am J Hum Genet 57:127–132PubMed Reish O, Townsend D, Berry SA, Tsai MY, King RA (1995) Tyrosinase inhibition due to interaction of homocyst(e)ine with copper: the mechanism for reversible hypopigmentation in homocystinuria due to cystathionine beta-synthase deficiency. Am J Hum Genet 57:127–132PubMed
Zurück zum Zitat Rongioletti M, Baldassini M, Papa F, Capoluongo E, Rocca B, Cristofaro RD, Salvati G, Larciprete G, Stroppolo A, Angelucci PA, Cirese E, Ameglio F (2005) Homocysteinemia is inversely correlated with platelet count and directly correlated with sE-and sP-selectin levels in females homozygous for C677T methylenetetrahydrofolate reductase. Platelets 16:185–190CrossRefPubMed Rongioletti M, Baldassini M, Papa F, Capoluongo E, Rocca B, Cristofaro RD, Salvati G, Larciprete G, Stroppolo A, Angelucci PA, Cirese E, Ameglio F (2005) Homocysteinemia is inversely correlated with platelet count and directly correlated with sE-and sP-selectin levels in females homozygous for C677T methylenetetrahydrofolate reductase. Platelets 16:185–190CrossRefPubMed
Zurück zum Zitat Rosenblatt D, Fowler B (2006) Disorders of cobalamin and folate transport and metabolism. In: Fernandes J, Saudubray J-M, van den Berghe G, Walter J (eds) Inborn metabolic diseases. Springer, Berlin, pp 341–356CrossRef Rosenblatt D, Fowler B (2006) Disorders of cobalamin and folate transport and metabolism. In: Fernandes J, Saudubray J-M, van den Berghe G, Walter J (eds) Inborn metabolic diseases. Springer, Berlin, pp 341–356CrossRef
Zurück zum Zitat Schwahn B, Rozen R (2001) Polymorphisms in the methylenetetrahydrofolate reductase gene: clinical consequences. Am J Pharmacogenomics 1:189–201CrossRefPubMed Schwahn B, Rozen R (2001) Polymorphisms in the methylenetetrahydrofolate reductase gene: clinical consequences. Am J Pharmacogenomics 1:189–201CrossRefPubMed
Zurück zum Zitat Schwahn BC, Chen Z, Laryea MD, Wendel U, Lussier-Cacan S, Genest J Jr, Mar MH, Zeisel SH, Castro C, Garrow T, Rozen R (2003) Homocysteine-betaine interactions in a murine model of 5, 10-methylenetetrahydrofolate reductase deficiency. Faseb J 17:512–514PubMed Schwahn BC, Chen Z, Laryea MD, Wendel U, Lussier-Cacan S, Genest J Jr, Mar MH, Zeisel SH, Castro C, Garrow T, Rozen R (2003) Homocysteine-betaine interactions in a murine model of 5, 10-methylenetetrahydrofolate reductase deficiency. Faseb J 17:512–514PubMed
Zurück zum Zitat Schwahn BC, Laryea MD, Chen Z, Melnyk S, Pogribny I, Garrow T, James SJ, Rozen R (2004) Betaine rescue of an animal model with methylenetetrahydrofolate reductase deficiency. Biochem J 382:831–840CrossRefPubMed Schwahn BC, Laryea MD, Chen Z, Melnyk S, Pogribny I, Garrow T, James SJ, Rozen R (2004) Betaine rescue of an animal model with methylenetetrahydrofolate reductase deficiency. Biochem J 382:831–840CrossRefPubMed
Zurück zum Zitat Sibani S, Christensen B, O'Ferrall E, Saadi I, Hiou-Tim F, Rosenblatt DS, Rozen R (2000) Characterization of six novel mutations in the methylenetetrahydrofolate reductase (MTHFR) gene in patients with homocystinuria. Hum Mutat 15:280–287CrossRefPubMed Sibani S, Christensen B, O'Ferrall E, Saadi I, Hiou-Tim F, Rosenblatt DS, Rozen R (2000) Characterization of six novel mutations in the methylenetetrahydrofolate reductase (MTHFR) gene in patients with homocystinuria. Hum Mutat 15:280–287CrossRefPubMed
Zurück zum Zitat Smith SB, Kekuda R, Gu X, Chancy C, Conway SJ, Ganapathy V (1999) Expression of folate receptor alpha in the mammalian retinol pigmented epithelium and retina. Invest Ophthalmol Vis Sci 40:840–848PubMed Smith SB, Kekuda R, Gu X, Chancy C, Conway SJ, Ganapathy V (1999) Expression of folate receptor alpha in the mammalian retinol pigmented epithelium and retina. Invest Ophthalmol Vis Sci 40:840–848PubMed
Zurück zum Zitat Sola-Visner M, Saxonhouse MA, Brown RE (2008) Neonatal thrombocytopenia: what we do and don't know. Early Hum Dev 84:499–506CrossRefPubMed Sola-Visner M, Saxonhouse MA, Brown RE (2008) Neonatal thrombocytopenia: what we do and don't know. Early Hum Dev 84:499–506CrossRefPubMed
Zurück zum Zitat Steegers-Theunissen RP, Van Iersel CA, Peer PG, Nelen WL, Steegers EA (2004) Hyperhomocysteinemia, pregnancy complications, and the timing of investigation. Obstet Gynecol 104:336–343CrossRefPubMed Steegers-Theunissen RP, Van Iersel CA, Peer PG, Nelen WL, Steegers EA (2004) Hyperhomocysteinemia, pregnancy complications, and the timing of investigation. Obstet Gynecol 104:336–343CrossRefPubMed
Zurück zum Zitat Trasler J, Deng L, Melnyk S, Pogribny I, Hiou-Tim F, Sibani S, Oakes C, Li E, James SJ, Rozen R (2003) Impact of Dnmt1 deficiency, with and without low folate diets, on tumor numbers and DNA methylation in Min mice. Carcinogenesis 24:39–45CrossRefPubMed Trasler J, Deng L, Melnyk S, Pogribny I, Hiou-Tim F, Sibani S, Oakes C, Li E, James SJ, Rozen R (2003) Impact of Dnmt1 deficiency, with and without low folate diets, on tumor numbers and DNA methylation in Min mice. Carcinogenesis 24:39–45CrossRefPubMed
Zurück zum Zitat Tsina EK, Marsden DL, Hansen RM, Fulton AB (2005) Maculopathy and retinal degeneration in cobalamin C methylmalonic aciduria and homocystinuria. Arch Ophthalmol 123:1143–1146CrossRefPubMed Tsina EK, Marsden DL, Hansen RM, Fulton AB (2005) Maculopathy and retinal degeneration in cobalamin C methylmalonic aciduria and homocystinuria. Arch Ophthalmol 123:1143–1146CrossRefPubMed
Zurück zum Zitat Viktorov IV, Aleksandrova OP, Alekseeva NY (2006) Homocysteine toxicity in organotypic cultures of rat retina. Bull Exp Biol Med 141:471–474CrossRefPubMed Viktorov IV, Aleksandrova OP, Alekseeva NY (2006) Homocysteine toxicity in organotypic cultures of rat retina. Bull Exp Biol Med 141:471–474CrossRefPubMed
Metadaten
Titel
Complete deficiency of methylenetetrahydrofolate reductase in mice is associated with impaired retinal function and variable mortality, hematological profiles, and reproductive outcomes
verfasst von
Andrea K. Lawrance
Julie Racine
Liyuan Deng
Xiaoling Wang
Pierre Lachapelle
Rima Rozen
Publikationsdatum
01.02.2011
Verlag
Springer Netherlands
Erschienen in
Journal of Inherited Metabolic Disease / Ausgabe 1/2011
Print ISSN: 0141-8955
Elektronische ISSN: 1573-2665
DOI
https://doi.org/10.1007/s10545-010-9127-1

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