Myotonia congenita: Novel mutations in CLCN1 gene and functional characterizations in Italian patients

التفاصيل البيبلوغرافية
العنوان: Myotonia congenita: Novel mutations in CLCN1 gene and functional characterizations in Italian patients
المؤلفون: Valeria A. Sansone, Eleonora Corti, Marzia Lecchi, Francesca Magri, Domenica Saccomanno, Stefania Corti, Monika Raimondi, Giacomo P. Comi, Enzo Wanke, Giovanni Meola, Grazia D'Angelo, Elisa Redaelli, Sabrina Lucchiari, Anna Modoni, Gianna Ulzi, Serena Pagliarani, Nereo Bresolin
المساهمون: Ulzi, G, Lecchi, M, Sansone, V, Redaelli, E, Corti, E, Saccomanno, D, Pagliarani, S, Corti, S, Magri, F, Raimondi, M, D'Angelo, G, Modoni, A, Bresolin, N, Meola, G, Wanke, E, Comi, G, Lucchiari, S
بيانات النشر: Elsevier, 2012.
سنة النشر: 2012
مصطلحات موضوعية: Adult, Male, Patch-Clamp Techniques, Adolescent, Myotonia Congenita, Mutation, Missense, Muscle disorder, Cell Line, Young Adult, Channelopathy, Chloride Channels, BIO/09 - FISIOLOGIA, medicine, Humans, Repolarization, Genetic Predisposition to Disease, Child, Aged, Genetics, CLCN1, biology, Myotonia congenita, Cell Membrane, Electric Conductivity, Skeletal muscle, Middle Aged, medicine.disease, Molecular biology, Resting potential, Muscle relaxation, medicine.anatomical_structure, Italy, Neurology, biology.protein, Female, Neurology (clinical), Skeletal muscle, Channelopathy, CLCN1 gene, Myotonia congenita, Thomsen's disease, Becker's generalized myotonia
الوصف: Myotonia congenita is an autosomal dominantly or recessively inherited muscle disorder causing impaired muscle relaxation and variable degrees of permanent muscle weakness, abnormal currents linked to the chloride channel gene (CLCN1) encoding the chloride channel on skeletal muscle membrane. We describe 12 novel mutations: c.1606G>C (p.Val536Leu), c.2533G>A (p.Gly845Ser), c.2434C>T (p.Gln812X), c.1499T>G (p.E500X), c.1012C>T (p.Arg338X), c.2403+1G>A, c.2840T>A (p.Val947Glu), c.1598C>T (p.Thr533Ile), c.1110delC, c.590T>A (p.Ile197Arg), c.2276insA Fs800X, c.490T>C (p.Trp164Arg) in 22 unrelated Italian patients. To further understand the functional outcome of selected missense mutations (p.Trp164Arg, p.Ile197Arg and p.Gly845Ser, and the previously reported p.Gly190Ser) we characterized the biophysical properties of mutant ion channels in tsA cell model. In the physiological range of muscle membrane potential, all the tested mutations, except p.Gly845Ser, reduced the open probability, increased the fast and slow components of deactivation and affected pore properties. This suggests a decrease in macroscopic chloride currents impairing membrane potential repolarization and causing hyperexcitability in muscle membranes. Detailed clinical features are given of the 8 patients characterized by cell electrophysiology. These data expand the spectrum of CLCN1 mutations and may contribute to genotype-phenotype correlations. Furthermore, we provide insights into the fine protein structure of ClC-1 and its physiological role in the maintenance of membrane resting potential.
اللغة: English
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::694d5e2eb0c92a0d15a0920cb68d6a8bTest
http://hdl.handle.net/10281/32847Test
حقوق: CLOSED
رقم الانضمام: edsair.doi.dedup.....694d5e2eb0c92a0d15a0920cb68d6a8b
قاعدة البيانات: OpenAIRE