Neuropediatrics 2002; 33(5): 249-254
DOI: 10.1055/s-2002-36738
Original Article

Georg Thieme Verlag Stuttgart · New York

Congenital Myasthenic Syndrome (CMS) in Three European Kinships due to a Novel Splice Mutation (IVS7 - 2 A/G) in the Epsilon Acetylcholine Receptor (AChR) Subunit Gene[*]

N. Barisic 1 , C. Schmidt 2 , O. P. Sidorova 3 , A. Herczegfalvi 4 , B. M. Gekht 5 , I.-H. Song 2 , R. Stucka 2 , V. Karcagi 6 , A. Abicht 2 , H. Lochmüller 2
  • 1Department of Pediatrics, Zagreb Medical School, Croatia
  • 2Genzentrum, Friedrich-Baur-Institut, and Department of Neurology, Ludwig-Maximilians-University Munich, Germany
  • 3Moscow Regional Clinical Research Institute, Moniki, Moscow, Russia
  • 4Department of Neurology, Bethesda Children's Hospital, Budapest, Hungary
  • 5Center of Neuromuscular Disorders, Institute of Pathology and Pathophysiology of the Russian Academy of Medical Sciences, Moscow, Russia
  • 6National Center for Public Health, Budapest, Hungary
Further Information

Publication History

Received: 16 January 2002

Accepted after Revision: 12 June 2002

Publication Date:
21 January 2003 (online)

Abstract

Mutations in the ε-acetylcholine receptor (AChRε) subunit gene cause congenital myasthenic syndromes (CMS) with postsynaptic neural transmission defects. We present 3 male and 2 female patients from three unrelated Croatian, Hungarian, and Russian families with autosomal recessive CMS. All patients manifested with variable degrees of ophthalmoparesis and generalized, fatiguable muscle weakness since birth or early infancy. Electrophysiological studies showed a decremental response in all patients indicating a neuromuscular transmission defect. Pyridostigmine treatment improved the proximal muscle weakness whereas the ophthalmoparesis remained unchanged in all patients. Analysis of the AChRε subunit gene showed homozygosity for a novel splice site mutation of intron 7 ε(IVS7-2A/G) in the two Croatian siblings. ε-mRNA analysis by RT-PCR and direct sequencing revealed that exon 7 was spliced directly to exon 9 with skipping of exon 8. The Hungarian and Russian patients were heteroallelic carriers of the same mutation ε(IVS7-2A/G) and of a frameshifting mutation ε70insG and ε1293insG, respectively. We hypothesize that altered splice products may not be expressed as functional receptors at the cell surface. A haplotype analysis with polymorphic markers revealed a high degree of similarity for the ε(IVS7-2A/G) carrying allele in all families and may therefore indicate a common origin of the mutation.

1 Participation: NB and CS contributed equally

References

  • 1 Abicht A, Stucka R, Karcagi V, Herczegfalvi A, Horvath R, Mortier W. et al . A common mutation (ε1267delG) in congenital myasthenic patients of Gypsy ethnic origin.  Neurology. 1999;  53 1564-1569
  • 2 Abicht A, Stucka R, Song I-H, Karcagi V, Kugler K, Baumgarten-Walczak A. et al . Genetic analysis of the entire AChR ε-subunit gene in 52 congenital myasthenic families.  Acta Myologica. 2000;  19 23-28
  • 3 Beeson D, Newland C, Croxen R, Buckel A, Li F Y, Larsson C. et al . Congenital myasthenic syndromes. Studies of the AChR and other candidate genes.  Ann N Y Acad Sci. 1998;  841 181-183
  • 4 Brengman J M, Ohno K, Milone M, Shen X-M, Friedman J RL, Feldmann R G. et al . Identification and functional characterization of eight novel acetylcholine receptor (AChR) mutations in six congenital myasthenic syndrome (CMS) kinships.  Neurology. 2000;  54 (Suppl 3) P03.064
  • 5 Burset M, Seledtsov I A, Solovyev V V. Analysis of canonical and non-canonical splice sites in mammalian genomes.  Nucleic Acids Res. 2000;  28 4364-4375
  • 6 Burset M, Seledtsov I A, Solovyev V V. Splice DB: database of canonical and non-canonical mammalian splice sites.  Nucleic Acids Res. 2001;  29 255-259
  • 7 Chomczynski P, Sacchi N. Single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction.  Anal Biochem. 1987;  162 156-159
  • 8 Croxen R, Young C, Slater C, Haslam S, Brydson M, Vincent A. et al . End-plate gamma- and epsilon-subunit mRNA levels in AChR deficiency syndrome due to epsilon-subunit null mutations.  Brain. 2001;  124 1362-1372
  • 9 Donger C, Krejci E, Serradell A P, Eymard B, Bon S, Nicole S. et al . Mutation in the human acetylcholinesterase-associated collagen gene, COLQ, is responsible for congenital myasthenic syndrome with end-plate acetylcholinesterase deficiency (Type Ic).  Am J Hum Genet. 1998;  63 967-975
  • 10 Engel A G. Myasthenic Syndromes. 2nd ed. New York; McGraw-Hill 1994
  • 11 Engel A G. Congenital myasthenic syndromes. 73rd ENMC International Workshop, 22 - 23 October, 1999, Naarden, The Netherlands.  Neuromuscul Disord. 2001;  11 315-321
  • 12 Engel A G, Ohno K, Bouzat C, Sine S M, Griggs R C. End-plate acetylcholine receptor deficiency due to nonsense mutations in the epsilon subunit.  Ann Neurol. 1996;  40 810-817
  • 13 Engel A G, Ohno K, Sine S. Congenital myasthenic syndromes.  Arch Neurol. 1999;  56 163-167
  • 14 Karcagi V, Tournev I, Schmidt C, Herczegfalvi A, Guergueltcheva V, Litvinenko I. et al . Congenital myasthenic syndrome in southeastern European Roma (Gypsies).  Acta Myologica. 2001;  20 231-237
  • 15 Middleton L T. Congenital myasthenic syndromes. 34th ENMC International Workshop, 10 - 11 June 1995.  Neuromuscul Disord. 1996;  6 133-136
  • 16 Ohno K, Anlar B, Ozdirim E, Brengman J M, DeBleecker J L, Engel A G. Myasthenic syndromes in Turkish kinships due to mutations in the acetylcholine receptor.  Ann Neurol. 1998;  44 234-241
  • 17 Ohno K, Brengman J, Tsujino A, Engel A G. Human endplate acetylcholinesterase deficiency caused by mutations in the collagen-like tail subunit (ColQ) of the asymmetric enzyme.  Proc Natl Acad Sci USA. 1998;  95 9654-9659
  • 18 Ohno K, Engel A G, Shen X M, Selcen D, Brengman J, Harper C M. et al . Rapsyn mutations in humans cause endplate acetylcholine-receptor deficiency and myasthenic syndrome.  Am J Hum Genet. 2002;  70 875-885
  • 19 Ohno K, Tsujino A, Brengman J M, Harper C M, Bajzer Z, Udd B. et al . Choline acetyltransferase mutations cause myasthenic syndrome associated with episodic apnea in humans.  Proc Natl Acad Sci USA. 2001;  98 2017-2022
  • 20 Shapira Y A, Sadeh M E, Bergtraum M P, Tsujino A, Ohno K, Shen X M. et al . Three novel COLQ mutations and variation of phenotypic expressivity due to G240 X.  Neurology. 2002;  58 603-609
  • 21 Sieb J P, Kraner S, Schrank B, Reitter B, Goebel T H, Tzartos S J. et al . Severe congenital myasthenic syndrome due to homozygosity of the 1293 insG ε-acetylcholine receptor subunit mutation.  Ann Neurol. 2000;  48 379-383
  • 22 Vincent A, Beeson D, Lang B. Molecular targets for autoimmune and genetic disorders of neuromuscular transmission.  Eur J Biochem. 2000;  267 6717-6728

1 Participation: NB and CS contributed equally

M.D. Hanns Lochmüller

Genzentrum München

Feodor-Lynen-Straße 25

81377 München

Germany

Email: hanns@lmb.uni-muenchen.de

    >