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神经疾病中的电压依赖性钙通道突变

Voltage-dependent calcium channel mutations in neurological disease.

作者信息

Burgess D L, Noebels J L

机构信息

Department of Neurology, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

Ann N Y Acad Sci. 1999 Apr 30;868:199-212. doi: 10.1111/j.1749-6632.1999.tb11287.x.

Abstract

Calcium ion channel mutations disrupt channel function and create recognizable disease phenotypes in the nervous system. The broad array of underlying cellular alterations is commensurate with the expanding genetic diversity of the voltage-gated calcium ion channel complex and its critical role in regulating cell function. Currently, 16 calcium channel genes are known, and mutations in 7 of these are associated with distinct inherited neurological disorders. These mutations provide new insight into the structure and function of the channels, and link specific subunits to cellular disease processes, including altered excitability, synaptic signaling, and cell death. Studies of mutant channel behavior, subunit interactions, and the differentiation of neural networks demonstrate unique patterns of downstream rearrangement. Developmental analysis of molecular plasticity in these mutants is a critical step to define the intervening mechanisms that translate aberrant ion channel behavior into the diverse clinical phenotypes observed.

摘要

钙离子通道突变会破坏通道功能,并在神经系统中产生可识别的疾病表型。潜在的一系列广泛的细胞改变与电压门控钙离子通道复合物不断扩大的遗传多样性及其在调节细胞功能中的关键作用相一致。目前,已知有16个钙通道基因,其中7个基因的突变与不同的遗传性神经系统疾病相关。这些突变使我们对通道的结构和功能有了新的认识,并将特定的亚基与细胞疾病过程联系起来,包括兴奋性改变、突触信号传递和细胞死亡。对突变通道行为、亚基相互作用以及神经网络分化的研究揭示了下游重排的独特模式。对这些突变体分子可塑性的发育分析是确定将异常离子通道行为转化为所观察到的多种临床表型的中间机制的关键一步。

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