Skip to main content
Top
Published in: neurogenetics 4/2007

01-11-2007 | Original Article

Novel POMGnT1 mutations define broader phenotypic spectrum of muscle–eye–brain disease

Authors: Ute Hehr, Goekhan Uyanik, Claudia Gross, Maggie C. Walter, Axel Bohring, Monika Cohen, Barbara Oehl-Jaschkowitz, Lynne M. Bird, Ghiat M. Shamdeen, Ulrich Bogdahn, Gerhard Schuierer, Haluk Topaloglu, Ludwig Aigner, Hanns Lochmüller, Jürgen Winkler

Published in: Neurogenetics | Issue 4/2007

Login to get access

Abstract

Muscle–eye–brain disease (MEB, OMIM 253280) is an autosomal recessive disorder characterized by a distinct triad of congenital muscular dystrophy, structural eye abnormalities, and cobblestone lissencephaly. Clinically, MEB patients present with early onset muscular hypotonia, severely compromised motor development, and mental retardation. Magnetic resonance imaging reveals a lissencephaly type II with hypoplasia of the brainstem and cerebellum. MEB is associated with mutations in the gene for protein O-mannose beta-1,2-N-acetylglucosaminyltransferase (POMGnT1, OMIM 606822). In this paper, we report the clinical findings of nine MEB patients from eight families. Eight of the nine patients presented typical features of MEB. However, a broad phenotypic variability was observed, ranging from two patients with severe autistic features to another patient with an unusually mild phenotype, initially diagnosed as congenital muscular dystrophy. Furthermore, severe hydrocephalus was reported in two families during a previous pregnancy, emphasizing the phenotypic overlap with Walker–Warburg syndrome. In addition to three previously reported mutations, we identified six novel POMGnT1 mutations (one missense, five truncating) in the present patient cohort. Our data suggest mutational hotspots within the minimal catalytic domain at arginine residue 442 (exon 16) and in intron 17. It is interesting to note that all mutations analyzed so far result in a complete loss of enzyme activity. Therefore, we conclude that the type and position of the POMGnT1 mutations are not of predictive value for the clinical severity. This supports the notion that additional environmental and/or genetic factors may contribute to the observed broad spectrum of POMGnT1-associated phenotypes.
Appendix
Available only for authorised users
Literature
1.
go back to reference Lehle L, Strahl S, Tanner W (2006) Protein glycosylation, conserved from yeast to man: a model organism helps elucidate congenital human diseases. Angew Chem Int Ed Engl 45:6802–6818PubMedCrossRef Lehle L, Strahl S, Tanner W (2006) Protein glycosylation, conserved from yeast to man: a model organism helps elucidate congenital human diseases. Angew Chem Int Ed Engl 45:6802–6818PubMedCrossRef
2.
go back to reference Yoshida A, Kobayashi K, Manya H, Taniguchi K, Kano H, Mizuno M, Inazu T, Mitsuhashi H, Takahashi S, Takeuchi M, Herrmann R, Straub V, Talim B, Voit T, Topaloglu H, Toda T, Endo T (2001) Muscular dystrophy and neuronal migration disorder caused by mutations in a glycosyltransferase, POMGnT1. Dev Cell 1:717–724PubMedCrossRef Yoshida A, Kobayashi K, Manya H, Taniguchi K, Kano H, Mizuno M, Inazu T, Mitsuhashi H, Takahashi S, Takeuchi M, Herrmann R, Straub V, Talim B, Voit T, Topaloglu H, Toda T, Endo T (2001) Muscular dystrophy and neuronal migration disorder caused by mutations in a glycosyltransferase, POMGnT1. Dev Cell 1:717–724PubMedCrossRef
3.
go back to reference Taniguchi K, Kobayashi K, Saito K, Yamanouchi H, Ohnuma A, Hayashi YK, Manya H, Jin DK, Lee M, Parano E, Falsaperla R, Pavone P, Van Coster R, Talim B, Steinbrecher A, Straub V, Nishino I, Topaloglu H, Voit T, Endo T, Toda T (2003) Worldwide distribution and broader clinical spectrum of muscle–eye–brain disease. Hum Mol Genet 12:527–534PubMedCrossRef Taniguchi K, Kobayashi K, Saito K, Yamanouchi H, Ohnuma A, Hayashi YK, Manya H, Jin DK, Lee M, Parano E, Falsaperla R, Pavone P, Van Coster R, Talim B, Steinbrecher A, Straub V, Nishino I, Topaloglu H, Voit T, Endo T, Toda T (2003) Worldwide distribution and broader clinical spectrum of muscle–eye–brain disease. Hum Mol Genet 12:527–534PubMedCrossRef
4.
go back to reference Beltran-Valero de Bernabe D, Currier S, Steinbrecher A, Celli J, van Beusekom E, van der Zwaag B, Kayserili H, Merlini L, Chitayat D, Dobyns WB, Cormand B, Lehesjoki AE, Cruces J, Voit T, Walsh CA, van Bokhoven H, Brunner HG (2002) Mutations in the O-mannosyltransferase gene POMT1 give rise to the severe neuronal migration disorder Walker-Warburg syndrome. Am J Hum Genet 71:1033–1043PubMedCrossRef Beltran-Valero de Bernabe D, Currier S, Steinbrecher A, Celli J, van Beusekom E, van der Zwaag B, Kayserili H, Merlini L, Chitayat D, Dobyns WB, Cormand B, Lehesjoki AE, Cruces J, Voit T, Walsh CA, van Bokhoven H, Brunner HG (2002) Mutations in the O-mannosyltransferase gene POMT1 give rise to the severe neuronal migration disorder Walker-Warburg syndrome. Am J Hum Genet 71:1033–1043PubMedCrossRef
5.
go back to reference van Reeuwijk J, Janssen M, van den Elzen C, Beltran-Valero de Bernabe D, Sabatelli P, Merlini L (2005) POMT2 mutations cause alpha-dystroglycan hypoglycosylation and Walker Warburg syndrome. J Med Genet 42:907–912PubMedCrossRef van Reeuwijk J, Janssen M, van den Elzen C, Beltran-Valero de Bernabe D, Sabatelli P, Merlini L (2005) POMT2 mutations cause alpha-dystroglycan hypoglycosylation and Walker Warburg syndrome. J Med Genet 42:907–912PubMedCrossRef
6.
go back to reference Kobayashi K, Nakahori Y, Miyake M, Matsumura K, Kondo-Iida E, Nomura Y, Segawa M, Yoshioka M, Saito K, Osawa M, Hamano K, Sakakihara Y, Nonaka I, Nakagome Y, Kanazawa I, Nakamura Y, Tokunaga K, Toda T (1998) An ancient retrotransposal insertion causes Fukuyama-type congenital muscular dystrophy. Nature 394:388–392PubMedCrossRef Kobayashi K, Nakahori Y, Miyake M, Matsumura K, Kondo-Iida E, Nomura Y, Segawa M, Yoshioka M, Saito K, Osawa M, Hamano K, Sakakihara Y, Nonaka I, Nakagome Y, Kanazawa I, Nakamura Y, Tokunaga K, Toda T (1998) An ancient retrotransposal insertion causes Fukuyama-type congenital muscular dystrophy. Nature 394:388–392PubMedCrossRef
7.
go back to reference Silan F, Yoshioka M, Kobayashi K, Simsek E, Tunc M, Alper M, Cam M, Guven A, Fukuda Y, Kinoshita M, Kocabay K, Toda T (2003) A New mutation of the fukutin gene in a non-Japanese patient. Ann Neurol 53:392–396PubMedCrossRef Silan F, Yoshioka M, Kobayashi K, Simsek E, Tunc M, Alper M, Cam M, Guven A, Fukuda Y, Kinoshita M, Kocabay K, Toda T (2003) A New mutation of the fukutin gene in a non-Japanese patient. Ann Neurol 53:392–396PubMedCrossRef
8.
go back to reference Diesen C, Saarinen A, Pihko H, Rosenlew C, Cormand B, Dobyns WB, Dieguez J, Valanne L, Joensuu T, Lehesjoki AE (2004) POMGnT1 mutation and phenotypic spectrum in muscle–eye–brain disease. J Med Genet 41:e115PubMedCrossRef Diesen C, Saarinen A, Pihko H, Rosenlew C, Cormand B, Dobyns WB, Dieguez J, Valanne L, Joensuu T, Lehesjoki AE (2004) POMGnT1 mutation and phenotypic spectrum in muscle–eye–brain disease. J Med Genet 41:e115PubMedCrossRef
9.
go back to reference Kano H, Kobayashi K, Herrmann R, Tachikawa M, Manya H, Nishino I, Nonaka I, Straub V, Talim B, Voit T, Topaloglu H, Endo T, Yoshikawa H, Toda T (2002) Deficiency of adystroglycan in muscle–eye–brain disease. Biochem Biophys Res Commun 291:1283–1286PubMedCrossRef Kano H, Kobayashi K, Herrmann R, Tachikawa M, Manya H, Nishino I, Nonaka I, Straub V, Talim B, Voit T, Topaloglu H, Endo T, Yoshikawa H, Toda T (2002) Deficiency of adystroglycan in muscle–eye–brain disease. Biochem Biophys Res Commun 291:1283–1286PubMedCrossRef
10.
go back to reference Santavuori P, Valanne L, Autti T, Haltia M, Pihko H, Sainio K (1998) Muscle–eye–brain disease—clinical features, visual evoked potentials and brain imaging in 20 patients. Eur J Peadiatr Neurol 1:41–47CrossRef Santavuori P, Valanne L, Autti T, Haltia M, Pihko H, Sainio K (1998) Muscle–eye–brain disease—clinical features, visual evoked potentials and brain imaging in 20 patients. Eur J Peadiatr Neurol 1:41–47CrossRef
11.
go back to reference Pihko H, Lappi M, Raitta C, Sainio K, Valanne L, Somer H, Santavuori P (1995) Ocular findings in muscle–eye–brain (MEB) disease: a follow up study. Brain Dev 17:57–61PubMedCrossRef Pihko H, Lappi M, Raitta C, Sainio K, Valanne L, Somer H, Santavuori P (1995) Ocular findings in muscle–eye–brain (MEB) disease: a follow up study. Brain Dev 17:57–61PubMedCrossRef
12.
go back to reference Valanne L, Pihko H, Katevuo K, Karttunen P, Somer H, Santavuori P (1994) MRI of the brain in muscle–eye–brain (MEB) disease. Neuroradiology 36:473–476PubMedCrossRef Valanne L, Pihko H, Katevuo K, Karttunen P, Somer H, Santavuori P (1994) MRI of the brain in muscle–eye–brain (MEB) disease. Neuroradiology 36:473–476PubMedCrossRef
13.
go back to reference Haliloglu G, Gross C, Senbil N, Talim B, Hehr U, Uyanik G, Winkler J, Topaloglu H (2004) Clinical spectrum of muscle–eye–brain disease: from the typical presentation to severe autistic features. Acta Myol 23:137–139PubMed Haliloglu G, Gross C, Senbil N, Talim B, Hehr U, Uyanik G, Winkler J, Topaloglu H (2004) Clinical spectrum of muscle–eye–brain disease: from the typical presentation to severe autistic features. Acta Myol 23:137–139PubMed
14.
go back to reference Meyer S, Struffert T, Uyanik G, Oehl-Jaschkowitz B, Hehr U, Shamdeen MG (2005) Congenital muscular dystrophies: muscle–eye–brain disease. Klin Padiatr 217:68–69 (in German)PubMedCrossRef Meyer S, Struffert T, Uyanik G, Oehl-Jaschkowitz B, Hehr U, Shamdeen MG (2005) Congenital muscular dystrophies: muscle–eye–brain disease. Klin Padiatr 217:68–69 (in German)PubMedCrossRef
15.
go back to reference Kanoff RJ, Curless RG, Petito C, Falcone S, Siatkowski RM, Pegoraro E (2002) Walker–Warburg syndrome: neurologic features and muscle membrane structure. Pediatr Neurol 18:76–80CrossRef Kanoff RJ, Curless RG, Petito C, Falcone S, Siatkowski RM, Pegoraro E (2002) Walker–Warburg syndrome: neurologic features and muscle membrane structure. Pediatr Neurol 18:76–80CrossRef
16.
go back to reference Vervoort VS, Holden KR, Ukadike KC, Collins JS, Saul RA, Srivastava AK (2004) POMGnT1 gene alterations in a family with neurological abnormalities. Ann Neurol 56:143–148PubMedCrossRef Vervoort VS, Holden KR, Ukadike KC, Collins JS, Saul RA, Srivastava AK (2004) POMGnT1 gene alterations in a family with neurological abnormalities. Ann Neurol 56:143–148PubMedCrossRef
17.
go back to reference Zhang W, Vajsar J, Cao P, Breningstall G, Diesen C, Dobyns W, Herrmann R, Lehesjoki A-E, Steinbrecher A, Talim B, Toda T, Topaloglu H, Voit T, Schachter H (2003) Enzymatic diagnostic test for Muscle–Eye–Brain type congenital muscular dystrophy using commercially available reagents. Clin Biochem 36:339–344PubMedCrossRef Zhang W, Vajsar J, Cao P, Breningstall G, Diesen C, Dobyns W, Herrmann R, Lehesjoki A-E, Steinbrecher A, Talim B, Toda T, Topaloglu H, Voit T, Schachter H (2003) Enzymatic diagnostic test for Muscle–Eye–Brain type congenital muscular dystrophy using commercially available reagents. Clin Biochem 36:339–344PubMedCrossRef
18.
go back to reference Akasaka-Manya K, Manya H, Kobayashi K, Toda T, Endoa T (2004) Structure–function analysis of human protein O-linked mannose b1,2-N-acetylglucosaminyltransferase 1, POMGnT1. Biochem Biophys Res Commun 320:39–44PubMedCrossRef Akasaka-Manya K, Manya H, Kobayashi K, Toda T, Endoa T (2004) Structure–function analysis of human protein O-linked mannose b1,2-N-acetylglucosaminyltransferase 1, POMGnT1. Biochem Biophys Res Commun 320:39–44PubMedCrossRef
19.
go back to reference Godfrey C, Mein R, Brockington M, Elson E, Topaloglu H, Smith J, Escolar D, Bertini E, Merlini I, Mercuri E, Bushby K, Straub V, North K, Abbs S, Muntoni F (2006) Molecular genetic analysis of 6 glycosyltransferases in a large population of dystroglycanopathy patients significantly widens the spectrum of phenotypes resulting from POMT1, POMGnT1 and Fukutin mutations. Neuromuscul Disord 16:683CrossRef Godfrey C, Mein R, Brockington M, Elson E, Topaloglu H, Smith J, Escolar D, Bertini E, Merlini I, Mercuri E, Bushby K, Straub V, North K, Abbs S, Muntoni F (2006) Molecular genetic analysis of 6 glycosyltransferases in a large population of dystroglycanopathy patients significantly widens the spectrum of phenotypes resulting from POMT1, POMGnT1 and Fukutin mutations. Neuromuscul Disord 16:683CrossRef
20.
go back to reference Balci B, Uyanik G, Dincer P, Gross C, Willer T, Talim B, Haliloglu G, Kale G, Hehr U, Winkler J, Topaloglu H (2005) An autosomal recessive limb girdle muscular dystrophy (LGMD2) with mild mental retardation is allelic to Walker-Warburg syndrome (WWS) caused by a mutation in the POMT1 gene. Neuromuscul Disord 15:271–275PubMedCrossRef Balci B, Uyanik G, Dincer P, Gross C, Willer T, Talim B, Haliloglu G, Kale G, Hehr U, Winkler J, Topaloglu H (2005) An autosomal recessive limb girdle muscular dystrophy (LGMD2) with mild mental retardation is allelic to Walker-Warburg syndrome (WWS) caused by a mutation in the POMT1 gene. Neuromuscul Disord 15:271–275PubMedCrossRef
21.
go back to reference van Reeuwijk J, Maugenre S, van den Elzen C, Verrips A, Bertini E, Muntoni F, Merlini L, Scheffer H, Brunner HG, Guicheney P, van Bokhoven H (2006) The expanding phenotype of POMT1 mutations: from Walker–Warburg syndrome to congenital muscular dystrophy, microcephaly, and mental retardation. Human Mutat 27:453–459CrossRef van Reeuwijk J, Maugenre S, van den Elzen C, Verrips A, Bertini E, Muntoni F, Merlini L, Scheffer H, Brunner HG, Guicheney P, van Bokhoven H (2006) The expanding phenotype of POMT1 mutations: from Walker–Warburg syndrome to congenital muscular dystrophy, microcephaly, and mental retardation. Human Mutat 27:453–459CrossRef
22.
go back to reference Chiba A, Matsumura K, Yamada H, Inazu T, Shimizu T, Kusunoki S, Kanazawa I, Kobata A, Endo T (1997) Structures of sialylated O-linked oligosaccharides of bovine peripheral nerve alpha-dystroglycan. The role of a novel O-mannosyl-type oligosaccharide in the binding of alpha-dystroglycan with laminin. J Biol Chem 272:2156–2162PubMedCrossRef Chiba A, Matsumura K, Yamada H, Inazu T, Shimizu T, Kusunoki S, Kanazawa I, Kobata A, Endo T (1997) Structures of sialylated O-linked oligosaccharides of bovine peripheral nerve alpha-dystroglycan. The role of a novel O-mannosyl-type oligosaccharide in the binding of alpha-dystroglycan with laminin. J Biol Chem 272:2156–2162PubMedCrossRef
23.
go back to reference Hayashi YK, Ogawa M, Tagawa K, Noguchi S, Ishihara T, Nonaka I, Arahata K (2001) Selective deficiency of alpha-dystroglycan in Fukuyama-type congenital muscular dystrophy. Neurology 57:115–121PubMed Hayashi YK, Ogawa M, Tagawa K, Noguchi S, Ishihara T, Nonaka I, Arahata K (2001) Selective deficiency of alpha-dystroglycan in Fukuyama-type congenital muscular dystrophy. Neurology 57:115–121PubMed
24.
go back to reference Takeda S, Kondo M, Sasaki J, Kurahashi H, Kano H, Arai K, Misaki K, Fukui T, Kobayashi K, Tachikawa M, Imamura M, Nakamura Y, Shimizu T, Murakami T, Sunada Y, Fujikado T, Matsumura K, Terashima T, Toda T (2003) Fukutin is required for maintenance of muscle integrity, cortical histiogenesis and normal eye development. Hum Mol Genet 12:1449–1459PubMedCrossRef Takeda S, Kondo M, Sasaki J, Kurahashi H, Kano H, Arai K, Misaki K, Fukui T, Kobayashi K, Tachikawa M, Imamura M, Nakamura Y, Shimizu T, Murakami T, Sunada Y, Fujikado T, Matsumura K, Terashima T, Toda T (2003) Fukutin is required for maintenance of muscle integrity, cortical histiogenesis and normal eye development. Hum Mol Genet 12:1449–1459PubMedCrossRef
25.
go back to reference Willer T, Prados B, Falcon-Perez JM, Renner-Muller I, Przemeck GK, Lommel M, Coloma A, Valero MC, de Angelis MH, Tanner W, Wolf E, Strahl S, Cruces J (2004) Targeted disruption of the Walker-Warburg syndrome gene Pomt1 in mouse results in embryonic lethality. Proc Natl Acad Sci USA 101:14126–1431PubMedCrossRef Willer T, Prados B, Falcon-Perez JM, Renner-Muller I, Przemeck GK, Lommel M, Coloma A, Valero MC, de Angelis MH, Tanner W, Wolf E, Strahl S, Cruces J (2004) Targeted disruption of the Walker-Warburg syndrome gene Pomt1 in mouse results in embryonic lethality. Proc Natl Acad Sci USA 101:14126–1431PubMedCrossRef
26.
go back to reference Liu J, Ball SL, Yang Y, Mei P, Zhang L, Shi H, Kaminski HJ, Lemmon VP, Hu H (2006) A genetic model for muscle-eye-brain disease in mice lacking protein O-mannose 1,2-N-acetylglucosaminyltransferase (POMGnT1). Mech Dev 123:228–240PubMedCrossRef Liu J, Ball SL, Yang Y, Mei P, Zhang L, Shi H, Kaminski HJ, Lemmon VP, Hu H (2006) A genetic model for muscle-eye-brain disease in mice lacking protein O-mannose 1,2-N-acetylglucosaminyltransferase (POMGnT1). Mech Dev 123:228–240PubMedCrossRef
27.
go back to reference Stoltenburg-Didinger G, Steinbrecher A (2003) Morphogenesis of type II lissencephaly: neuropathology, genetics and pathomechanisms. Neuroembryology 2:32–39CrossRef Stoltenburg-Didinger G, Steinbrecher A (2003) Morphogenesis of type II lissencephaly: neuropathology, genetics and pathomechanisms. Neuroembryology 2:32–39CrossRef
28.
go back to reference Manya H, Sakai K, Kobayashi K, Taniguchi K, Kawakita M, Toda T, Endo T (2003) Loss-of-function of an N-acetylglucosaminyltransferase, POMGnT1, in muscle–eye–brain disease. Biochem Biophys Res Commun 306:93–97PubMedCrossRef Manya H, Sakai K, Kobayashi K, Taniguchi K, Kawakita M, Toda T, Endo T (2003) Loss-of-function of an N-acetylglucosaminyltransferase, POMGnT1, in muscle–eye–brain disease. Biochem Biophys Res Commun 306:93–97PubMedCrossRef
29.
go back to reference Biancheri R, Bertini E, Falace A, Pedemonte M, Rossi A, D’Amico A, Scapolan S, Bergamino L, Petrini S, Cassandrini D, Broda P, Manfredi M, Zara F, Santorelli FM, Minetti C, Bruno C (2006) POMGnT1 mutations in congenital muscular dystrophy: genotype–phenotype correlation and expanded clinical spectrum. Arch Neurol 63:1491–1495PubMedCrossRef Biancheri R, Bertini E, Falace A, Pedemonte M, Rossi A, D’Amico A, Scapolan S, Bergamino L, Petrini S, Cassandrini D, Broda P, Manfredi M, Zara F, Santorelli FM, Minetti C, Bruno C (2006) POMGnT1 mutations in congenital muscular dystrophy: genotype–phenotype correlation and expanded clinical spectrum. Arch Neurol 63:1491–1495PubMedCrossRef
30.
go back to reference Matsumoto H, Hayashi YK, Kim DS, Ogawa M, Murakami T, Noguchi S, Nonaka I, Nakazawa T, Matsuo T, Futagami S, Campbell KP, Nishino I (2005) Congenital muscular dystrophy with glycosylation defects of alpha-dystroglycan in Japan. Neuromuscul Disord 15:342–348PubMedCrossRef Matsumoto H, Hayashi YK, Kim DS, Ogawa M, Murakami T, Noguchi S, Nonaka I, Nakazawa T, Matsuo T, Futagami S, Campbell KP, Nishino I (2005) Congenital muscular dystrophy with glycosylation defects of alpha-dystroglycan in Japan. Neuromuscul Disord 15:342–348PubMedCrossRef
31.
go back to reference Vajsar J, Zhang W, Dobyns WB, Biggar D, Holden KR, Hawkins C, Ray P, Olney AH, Burson CM, Srivastava AK, Schachter H (2006) Carriers and patients with muscle-eye-brain disease can be rapidly diagnosed by enzymatic analysis of fibroblasts and lymphoblasts. Neuromuscul Disord 16:132–136PubMedCrossRef Vajsar J, Zhang W, Dobyns WB, Biggar D, Holden KR, Hawkins C, Ray P, Olney AH, Burson CM, Srivastava AK, Schachter H (2006) Carriers and patients with muscle-eye-brain disease can be rapidly diagnosed by enzymatic analysis of fibroblasts and lymphoblasts. Neuromuscul Disord 16:132–136PubMedCrossRef
32.
go back to reference Balci B, Morris-Rosendahl DJ, Celebi A, Talim B, Topaloglu H, Dincer P (2007) Prenatal diagnosis of muscle–eye–brain disease. Prenat Diagn 27:51–54PubMedCrossRef Balci B, Morris-Rosendahl DJ, Celebi A, Talim B, Topaloglu H, Dincer P (2007) Prenatal diagnosis of muscle–eye–brain disease. Prenat Diagn 27:51–54PubMedCrossRef
Metadata
Title
Novel POMGnT1 mutations define broader phenotypic spectrum of muscle–eye–brain disease
Authors
Ute Hehr
Goekhan Uyanik
Claudia Gross
Maggie C. Walter
Axel Bohring
Monika Cohen
Barbara Oehl-Jaschkowitz
Lynne M. Bird
Ghiat M. Shamdeen
Ulrich Bogdahn
Gerhard Schuierer
Haluk Topaloglu
Ludwig Aigner
Hanns Lochmüller
Jürgen Winkler
Publication date
01-11-2007
Publisher
Springer-Verlag
Published in
Neurogenetics / Issue 4/2007
Print ISSN: 1364-6745
Electronic ISSN: 1364-6753
DOI
https://doi.org/10.1007/s10048-007-0096-y

Other articles of this Issue 4/2007

neurogenetics 4/2007 Go to the issue

Acknowledgement to Referees

Acknowledgement to Referees 2006/2007