首页> 外文期刊>Journal of biomedicine & biotechnology >Physiology and Pathophysiology of CLC-1:Mecjamisms of a Chloride Channel Disease,Myotonia
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Physiology and Pathophysiology of CLC-1:Mecjamisms of a Chloride Channel Disease,Myotonia

机译:CLC-1的生理与病理生理:肌强直性氯离子通道疾病的继发症

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摘要

The CLC-1 chloride channel, a member of the CLC-channel/transporter family, plays important roles for the physiological functions of skeletal muscles. The opening of this chloride channel is voltage dependent and is also regulated by protons and chloride ions. Mutations of the gene encoding CLC-1 result in a genetic disease, myotonia congenita, which can be inherited as an autosmal dominant (Thomsen type) or an autosomal recessive (Becker type) pattern. These mutations are scattered throughout the entire protein sequence, and no clear relationship exists between the inheritance pattern of the mutation and the location of the mutation in the channel protein. The inheritance pattern of some but not all myotonia mutants can be explained by a working hypothesis that these mutations may exert a "dominant negative" effect on the gating function of the channel. However, other mutations may be due to different pathophysiological mechanisms, such as the defect of protein trafficking to membranes. Thus, the underlying mechanisms of myotonia are likely to be quite diverse, and elucidating the pathophysiology of myotonia mutations will require the understanding of multiple molecular/cellular mechanisms of CLC-1 channels in skeletal muscles, including molecular operation, protein synthesis, and membrane trafficking mechanisms.
机译:CLC-1氯化物通道是CLC通道/转运蛋白家族的成员,对骨骼肌的生理功能起着重要作用。该氯离子通道的打开取决于电压,并且也受质子和氯离子的调节。编码CLC-1的基因的突变会导致遗传疾病,即先天性肌强直,可以遗传为常染色体显性遗传(汤姆森型)或常染色体隐性遗传(贝克尔型)模式。这些突变散布在整个蛋白质序列中,并且在突变的遗传模式和突变在通道蛋白中的位置之间不存在明确的关系。一些但不是全部肌强直突变体的遗传模式可以通过一个有效的假设来解释,即这些突变可能对通道的门控功能产生“显着的负性”作用。但是,其他突变可能是由于不同的病理生理机制所致,例如蛋白质转运至膜的缺陷。因此,肌强直的潜在机制可能非常多样,阐明肌强直突变的病理生理将需要了解骨骼肌中CLC-1通道的多种分子/细胞机制,包括分子操作,蛋白质合成和膜运输机制。

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