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质膜和细胞内部的钙泵

Calcium pumps of plasma membrane and cell interior.

作者信息

Strehler Emanuel E, Treiman Marek

机构信息

Department of Biochemistry and Molecular Biology, Mayo Clinic, College of Medicine, Rochester, Minnesota, USA.

出版信息

Curr Mol Med. 2004 May;4(3):323-35. doi: 10.2174/1566524043360735.

Abstract

Calcium entering the cell from the outside or from intracellular organelles eventually must be returned to the extracellular milieu or to intracellular storage organelles. The two major systems capable of pumping Ca2+ against its large concentration gradient out of the cell or into the sarco/endoplasmatic reticulum are the plasma membrane Ca2+ ATPases (PMCAs) and the sarco/endoplasmic reticulum Ca2+ ATPases (SERCAs), respectively. In mammals, multigene families code for these Ca2+ pumps and additional isoform subtypes are generated via alternative splicing. PMCA and SERCA isoforms show developmental-, tissue- and cell type-specific patterns of expression. Different PMCA and SERCA isoforms are characterized by different regulatory and kinetic properties that likely are optimized for the distinct functional tasks fulfilled by each pump in setting resting cytosolic or intra-organellar Ca2+ levels, and in shaping intracellular Ca2+ signals with spatial and temporal resolution. The loss or malfunction of specific Ca2+ pump isoforms is associated with defects such as deafness, ataxia or heart failure. Understanding the involvement of different Ca2+ pump isoforms in the pathogenesis of disease allows their identification as therapeutic targets for the development of selective strategies to prevent or combat the progression of these disorders.

摘要

从细胞外或细胞内细胞器进入细胞的钙最终必须回到细胞外环境或细胞内储存细胞器中。能够逆着大浓度梯度将Ca2+泵出细胞或泵入肌浆网/内质网的两个主要系统分别是质膜Ca2+ATP酶(PMCA)和肌浆网/内质网Ca2+ATP酶(SERCA)。在哺乳动物中,多基因家族编码这些Ca2+泵,并且通过可变剪接产生额外的亚型。PMCA和SERCA亚型呈现出发育、组织和细胞类型特异性的表达模式。不同的PMCA和SERCA亚型具有不同的调节和动力学特性,这些特性可能针对每个泵在设定静息胞浆或细胞器内Ca2+水平以及以空间和时间分辨率塑造细胞内Ca2+信号时所执行的不同功能任务进行了优化。特定Ca2+泵亚型的缺失或功能障碍与耳聋、共济失调或心力衰竭等缺陷相关。了解不同Ca2+泵亚型在疾病发病机制中的作用有助于将它们确定为开发预防或对抗这些疾病进展的选择性策略的治疗靶点。

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