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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Structure and function of splice variants of the cardiac voltage-gated sodium channel Na(v)1.5.
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Structure and function of splice variants of the cardiac voltage-gated sodium channel Na(v)1.5.

机译:心脏电压门控钠通道Na(v)1.5的剪接变体的结构和功能。

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摘要

Voltage-gated sodium channels mediate the rapid upstroke of the action potential in excitable tissues. The tetrodotoxin (TTX) resistant isoform Na(v)1.5, encoded by the SCN5A gene, is the predominant isoform in the heart. This channel plays a key role for excitability of atrial and ventricular cardiomyocytes and for rapid impulse propagation through the specific conduction system. During recent years, strong evidence has been accumulated in support of the expression of several Na(v)1.5 splice variants in the heart, and in various other tissues and cell lines including brain, dorsal root ganglia, breast cancer cells and neuronal stem cell lines. This review summarizes our knowledge on the structure and putative function of nine Na(v)1.5 splice variants detected so far. Attention will be paid to the distinct biophysical properties of the four functional splice variants, to the pronounced tissue- and species-specific expression, and to the developmental regulation of Na(v)1.5 splicing. The implications of alternative splicing for SCN5A channelopathies, and for a better understanding of genotype-phenotype correlations, are discussed.
机译:电压门控钠通道介导可兴奋组织中动作电位的快速上调。由SCN5A基因编码的抗河豚毒素(TTX)的亚型Na(v)1.5是心脏中主要的亚型。该通道对于心房和心室心肌细胞的兴奋性以及通过特定传导系统的快速脉冲传播起着关键作用。近年来,已经积累了强有力的证据来支持心脏和心脏,背根神经节,乳腺癌细胞和神经元干细胞系等多种其他组织和细胞系中几种Na(v)1.5剪接变体的表达。 。这篇综述总结了我们对到目前为止检测到的九个Na(v)1.5剪接变体的结构和推定功能的了解。将注意四个功能性剪接变体的独特生物物理特性,明显的组织和物种特异性表达以及Na(v)1.5剪接的发育调控。讨论了选择性剪接对SCN5A通道病变的影响,以及对基因型-表型相关性的更好理解。

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