نتایج جستجو برای: ژن clcn1

تعداد نتایج: 15916  

پایان نامه :وزارت علوم، تحقیقات و فناوری - دانشگاه یزد - دانشکده علوم پایه 1394

سندرم میوتونی غیردیستروفیک، شکلی از گروه بیماری های کمیاب وراثتی می باشد. نشانه اصلی این سندرم، میوتونی بوده که با طولانی شدن زمان آسایش ماهیچه اسکلتی، به دنبال انقباض ناگهانی ارادی یا تحریکات مکانیکی به وجود می آید. در این بیماری نقص در عملکرد کانال های یونی ماهیچه منجر به افزایش تحریک پذیری غشاء خواهد شد. جهش در ژن کد کننده زیرواحد آلفا کانال سدیم وابسته به ولتاژ (scn4a) و ژن کد کننده کانال ک...

2016
Mohammad Miryounesi Soudeh Ghafouri-Fard Majid Fardaei

Congenital recessive myotonia is a rare genetic disorder caused by mutations in CLCN1, which codes for the main skeletal muscle chloride channel ClC-1. More than 120 mutations have been found in this gene. The main feature of this disorder is muscle membrane hyperexcitability. Here, we report a 59-year male patient suffering from congenital myotonia. He had transient generalized myotonia, which...

Background: Non-dystrophy myotonias (NDMs) have similar clinical signs of muscle weakness and congenital myotoniais typical example. This disease is caused by mutations in CLCN1 gene. CLCN1 gene has 23 exons and exon 8 is hotspot. Mutations in skeletal muscle chloride channel gene are associated with a group of clinically overlapping diseases by alterations in the excitability of the sarcolemma...

Journal: :Neurology 2013
Tim T Chen Tara L Klassen Alica M Goldman Carla Marini Renzo Guerrini Jeffrey L Noebels

OBJECTIVE To explore the potential contribution of genetic variation in voltage-gated chloride channels to epilepsy, we analyzed CLCN family (CLCN1-7) gene variant profiles in individuals with complex idiopathic epilepsy syndromes and determined the expression of these channels in human and murine brain. METHODS We used parallel exomic sequencing of 237 ion channel subunit genes to screen ind...

2012
Tai-Seung Nam Hyun-Jung Jung Seok-Yong Choi Young-Ok Kim Myeong-Kyu Kim Ki-Hyun Cho

BACKGROUND AND PURPOSE While the etiology and clinical features of "EMG disease" - which is characterized by diffusely increased insertional activity on needle electromyography (EMG) in the absence of neuromuscular disease - are not well known, some authorities believe it may be a form of myotonia congenita (MC). The aims of this study were to determine the clinical features of EMG disease and ...

Journal: :The eurobiotech journal 2023

Abstract The study has developed a model splicing construct assay system based on misregulation, one of the major molecular features associated with myotonic dystrophy. double reporters for intron 2 in chloride channel (CLCN1). CLCN1 transgene was used to transfect wild type and DM fibroblast cell lines clones generated showed that it enabled quantification efficiency construct. Validation fibr...

Journal: :Human molecular genetics 1995
F Lehmann-Horn V Mailänder R Heine A L George

The group of dominant non-dystrophic myotonias, comprising disorders characterized by clinically similar forms of myogenic muscle stiffness, is genetically inhomogeneous. Dominant myotonia congenita (Thomsen's disease) is linked to CLCN1, the gene encoding the major muscle chloride channel, localized on chromosome 7q35. In contrast, dominant myotonias sensitive to potassium are caused by point ...

2009
In-Soo Moon Hyang-Sook Kim Jin-Hong Shin Yeong-Eun Park Kyu-Hyun Park Yong-Bum Shin Jong Seok Bae Young-Chul Choi Dae-Seong Kim

Myotonia congenita (MC) is a form of nondystrophic myotonia caused by a mutation of CLCN1, which encodes human skeletal muscle chloride channel (CLC-1). We performed sequence analysis of all coding regions of CLCN1 in patients clinically diagnosed with MC, and identified 10 unrelated Korean patients harboring mutations. Detailed clinical analysis was performed in these patients to identify thei...

2012
SIMONA-FELICIA URSU ALEXI ALEKOV NING-HUI MAO KARIN JURKAT-ROTT

Myotonic dystrophy type 2 (DM2) is caused by CCTG-repeat expansions. Occurrence of splicing and mutations in the muscle chloride channel gene CLCN1 have been reported to contribute to the phenotype. To examine the effect of CLCN1 in DM2 in Germany, we determined the frequency of a representative ClC1 mutation, R894X, and its effect on DM2 clinical features. Then, we examined CLCN1 mRNA splice v...

Congenital recessive myotonia is a rare genetic disorder caused by mutations in CLCN1, which codes for the main skeletal muscle chloride channel ClC-1. More than 120 mutations have been found in this gene. The main feature of this disorder is muscle membrane hyperexcitability. Here, we report a 59-year male patient suffering from congenital myotonia. He had transient generalized myotonia, which...

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