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Erschienen in: Acta Neurologica Belgica 4/2018

26.02.2018 | Original Article

Becker’s myotonia: novel mutations and clinical variability in patients born to consanguineous parents

verfasst von: Ibrahim Sahin, Haktan B. Erdem, Huseyin Tan, Abdulgani Tatar

Erschienen in: Acta Neurologica Belgica | Ausgabe 4/2018

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Abstract

Myotonia congenita is an inherited muscle disease present from childhood that is characterized by impaired muscle relaxation after contraction resulting in muscle stiffness; moreover, skeletal striated muscle groups may be involved. Myotonia congenita occurs due to chloride (Cl) channel mutations that reduce the stabilizing Cl conductance, and it is caused by mutations in the CLCN1 gene. This paper describes four patients from two different healthy consanguineous Turkish families with muscle stiffness and easy fatigability. A genetic investigation was performed. Mutation analyses showed a homozygous p.Tyr150* (c.450C > A) mutation in patients 1, 2 and 3 and a homozygous p.Leu159Cysfs*11 (c.475delC) mutation in patient 4 in the CLCN1 gene. These mutations have never been reported before and in silico analyses showed that the mutations were disease causing. They may be predicted to cause nonsense-mediated mRNA decay. Our data expand the spectrum of CLCN1 mutations and provide insights for genotype–phenotype correlations of myotonia congenita.
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Literatur
1.
Zurück zum Zitat Heatwole CR, Moxley RT 3rd (2007) The nondystrophic myotonias. Neurotherapeutics 4:238–251CrossRef Heatwole CR, Moxley RT 3rd (2007) The nondystrophic myotonias. Neurotherapeutics 4:238–251CrossRef
2.
Zurück zum Zitat Tang C-Y, Chen T-Y (2011) Physiology and pathophysiology of CLC-1: mechanisms of a chloride channel disease, myotonia. BioMed Res Int 2011:685328 Tang C-Y, Chen T-Y (2011) Physiology and pathophysiology of CLC-1: mechanisms of a chloride channel disease, myotonia. BioMed Res Int 2011:685328
3.
Zurück zum Zitat Pedersen TH, Riisager A, de Paoli FV, Chen TY, Nielsen OB (2016) Role of physiological ClC-1 Cl- ion channel regulation for the excitability and function of working skeletal muscle. J Gen Physiol 147:291–308CrossRef Pedersen TH, Riisager A, de Paoli FV, Chen TY, Nielsen OB (2016) Role of physiological ClC-1 Cl- ion channel regulation for the excitability and function of working skeletal muscle. J Gen Physiol 147:291–308CrossRef
4.
Zurück zum Zitat Fahlke C (2011) Chloride channels take center stage in a muscular drama. J Gen Physiol 137:17–19CrossRef Fahlke C (2011) Chloride channels take center stage in a muscular drama. J Gen Physiol 137:17–19CrossRef
5.
Zurück zum Zitat Colding-Jorgensen E (2005) Phenotypic variability in myotonia congenita. Muscle Nerve 32:19–34CrossRef Colding-Jorgensen E (2005) Phenotypic variability in myotonia congenita. Muscle Nerve 32:19–34CrossRef
6.
Zurück zum Zitat Becker PE (1979) Heterozygote manifestation in recessive generalized myotonia. Hum Genet 46:325–329CrossRef Becker PE (1979) Heterozygote manifestation in recessive generalized myotonia. Hum Genet 46:325–329CrossRef
7.
Zurück zum Zitat Imbrici P, Altamura C, Pessia M, Mantegazza R, Desaphy JF, Camerino DC (2015) ClC-1 chloride channels: state-of-the-art research and future challenges. Front Cell Neurosci 9:156CrossRef Imbrici P, Altamura C, Pessia M, Mantegazza R, Desaphy JF, Camerino DC (2015) ClC-1 chloride channels: state-of-the-art research and future challenges. Front Cell Neurosci 9:156CrossRef
8.
Zurück zum Zitat Lorenz C, Meyer-Kleine C, Steinmeyer K, Koch MC, Jentsch TJ (1994) Genomic organization of the human muscle chloride channel CIC-1 and analysis of novel mutations leading to Becker-type myotonia. Hum Mol Genet 3:941–946CrossRef Lorenz C, Meyer-Kleine C, Steinmeyer K, Koch MC, Jentsch TJ (1994) Genomic organization of the human muscle chloride channel CIC-1 and analysis of novel mutations leading to Becker-type myotonia. Hum Mol Genet 3:941–946CrossRef
9.
Zurück zum Zitat Pusch M (2002) Myotonia caused by mutations in the muscle chloride channel gene CLCN1. Hum Mutat 19:423–434CrossRef Pusch M (2002) Myotonia caused by mutations in the muscle chloride channel gene CLCN1. Hum Mutat 19:423–434CrossRef
10.
Zurück zum Zitat Lossin C, George AL Jr (2008) Myotonia congenita. Adv Genet 63:25–55PubMed Lossin C, George AL Jr (2008) Myotonia congenita. Adv Genet 63:25–55PubMed
11.
Zurück zum Zitat Duno M, Colding-Jorgensen E, Grunnet M, Jespersen T, Vissing J, Schwartz M (2004) Difference in allelic expression of the CLCN1 gene and the possible influence on the myotonia congenita phenotype. Eur J Hum Genet 12:738–743CrossRef Duno M, Colding-Jorgensen E, Grunnet M, Jespersen T, Vissing J, Schwartz M (2004) Difference in allelic expression of the CLCN1 gene and the possible influence on the myotonia congenita phenotype. Eur J Hum Genet 12:738–743CrossRef
12.
Zurück zum Zitat Stenson PD, Mort M, Ball EV, Shaw K, Phillips A, Cooper DN (2014) The human gene mutation database: building a comprehensive mutation repository for clinical and molecular genetics, diagnostic testing and personalized genomic medicine. Hum Genet 133:1–9CrossRef Stenson PD, Mort M, Ball EV, Shaw K, Phillips A, Cooper DN (2014) The human gene mutation database: building a comprehensive mutation repository for clinical and molecular genetics, diagnostic testing and personalized genomic medicine. Hum Genet 133:1–9CrossRef
13.
Zurück zum Zitat Simpson BJ, Height TA, Rychkov GY, Nowak KJ, Laing NG, Hughes BP, Bretag AH (2004) Characterization of three myotonia-associated mutations of the CLCN1 chloride channel gene via heterologous expression. Hum Mutat 24:185CrossRef Simpson BJ, Height TA, Rychkov GY, Nowak KJ, Laing NG, Hughes BP, Bretag AH (2004) Characterization of three myotonia-associated mutations of the CLCN1 chloride channel gene via heterologous expression. Hum Mutat 24:185CrossRef
14.
Zurück zum Zitat Weinberger S, Wojciechowski D, Sternberg D, Lehmann-Horn F, Jurkat-Rott K, Becher T, Begemann B, Fahlke C, Fischer M (2012) Disease-causing mutations C277R and C277Y modify gating of human ClC-1 chloride channels in myotonia congenita. J Physiol 590:3449–3464CrossRef Weinberger S, Wojciechowski D, Sternberg D, Lehmann-Horn F, Jurkat-Rott K, Becher T, Begemann B, Fahlke C, Fischer M (2012) Disease-causing mutations C277R and C277Y modify gating of human ClC-1 chloride channels in myotonia congenita. J Physiol 590:3449–3464CrossRef
15.
Zurück zum Zitat Heatwole CR, Statland JM, Logigian EL (2013) The diagnosis and treatment of myotonic disorders. Muscle Nerve 47:632–648CrossRef Heatwole CR, Statland JM, Logigian EL (2013) The diagnosis and treatment of myotonic disorders. Muscle Nerve 47:632–648CrossRef
16.
Zurück zum Zitat Brugnoni R, Kapetis D, Imbrici P, Pessia M, Canioni E, Colleoni L, de Rosbo NK, Morandi L, Cudia P, Gashemi N, Bernasconi P, Desaphy JF, Conte D, Mantegazza R (2013) A large cohort of myotonia congenita probands: novel mutations and a high-frequency mutation region in exons 4 and 5 of the CLCN1 gene. J Hum Genet 58:581–587CrossRef Brugnoni R, Kapetis D, Imbrici P, Pessia M, Canioni E, Colleoni L, de Rosbo NK, Morandi L, Cudia P, Gashemi N, Bernasconi P, Desaphy JF, Conte D, Mantegazza R (2013) A large cohort of myotonia congenita probands: novel mutations and a high-frequency mutation region in exons 4 and 5 of the CLCN1 gene. J Hum Genet 58:581–587CrossRef
17.
Zurück zum Zitat Raja Rayan DL, Haworth A, Sud R, Matthews E, Fialho D, Burge J, Portaro S, Schorge S, Tuin K, Lunt P, McEntagart M, Toscano A, Davis MB, Hanna MG (2012) A new explanation for recessive myotonia congenita: exon deletions and duplications in CLCN1. Neurology 78:1953–1958CrossRef Raja Rayan DL, Haworth A, Sud R, Matthews E, Fialho D, Burge J, Portaro S, Schorge S, Tuin K, Lunt P, McEntagart M, Toscano A, Davis MB, Hanna MG (2012) A new explanation for recessive myotonia congenita: exon deletions and duplications in CLCN1. Neurology 78:1953–1958CrossRef
18.
Zurück zum Zitat Desaphy JF, Gramegna G, Altamura C, Dinardo MM, Imbrici P, George AL Jr, Modoni A, Lomonaco M, Conte Camerino D (2013) Functional characterization of ClC-1 mutations from patients affected by recessive myotonia congenita presenting with different clinical phenotypes. Exp Neurol 248:530–540CrossRef Desaphy JF, Gramegna G, Altamura C, Dinardo MM, Imbrici P, George AL Jr, Modoni A, Lomonaco M, Conte Camerino D (2013) Functional characterization of ClC-1 mutations from patients affected by recessive myotonia congenita presenting with different clinical phenotypes. Exp Neurol 248:530–540CrossRef
19.
Zurück zum Zitat Skalova D, Zidkova J, Vohanka S, Mazanec R, Musova Z, Vondracek P, Mrazova L, Kraus J, Reblova K, Fajkusova L (2013) CLCN1 mutations in Czech patients with myotonia congenita, in silico analysis of novel and known mutations in the human dimeric skeletal muscle chloride channel. PLoS ONE 8:e82549CrossRef Skalova D, Zidkova J, Vohanka S, Mazanec R, Musova Z, Vondracek P, Mrazova L, Kraus J, Reblova K, Fajkusova L (2013) CLCN1 mutations in Czech patients with myotonia congenita, in silico analysis of novel and known mutations in the human dimeric skeletal muscle chloride channel. PLoS ONE 8:e82549CrossRef
20.
Zurück zum Zitat Lamb FS, Clayton GH, Liu BX, Smith RL, Barna TJ, Schutte BC (1999) Expression of CLCN voltage-gated chloride channel genes in human blood vessels. J Mol Cell Cardiol 31:657–666CrossRef Lamb FS, Clayton GH, Liu BX, Smith RL, Barna TJ, Schutte BC (1999) Expression of CLCN voltage-gated chloride channel genes in human blood vessels. J Mol Cell Cardiol 31:657–666CrossRef
21.
Zurück zum Zitat Portaro S, Altamura C, Licata N, Camerino GM, Imbrici P, Musumeci O, Rodolico C, Conte Camerino D, Toscano A, Desaphy JF (2015) Clinical, molecular, and functional characterization of CLCN1 mutations in three families with recessive myotonia congenita. Neuromolecular Med 17:285–296CrossRef Portaro S, Altamura C, Licata N, Camerino GM, Imbrici P, Musumeci O, Rodolico C, Conte Camerino D, Toscano A, Desaphy JF (2015) Clinical, molecular, and functional characterization of CLCN1 mutations in three families with recessive myotonia congenita. Neuromolecular Med 17:285–296CrossRef
22.
Zurück zum Zitat Thomas J, Tarleton J, Baker SK (2008) Recessive CLCN1 mutation presenting as thomsen disease. Muscle Nerve 38:1515–1517CrossRef Thomas J, Tarleton J, Baker SK (2008) Recessive CLCN1 mutation presenting as thomsen disease. Muscle Nerve 38:1515–1517CrossRef
Metadaten
Titel
Becker’s myotonia: novel mutations and clinical variability in patients born to consanguineous parents
verfasst von
Ibrahim Sahin
Haktan B. Erdem
Huseyin Tan
Abdulgani Tatar
Publikationsdatum
26.02.2018
Verlag
Springer International Publishing
Erschienen in
Acta Neurologica Belgica / Ausgabe 4/2018
Print ISSN: 0300-9009
Elektronische ISSN: 2240-2993
DOI
https://doi.org/10.1007/s13760-018-0893-0

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