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质膜钙ATP酶作为细胞钙处理的动态调节因子。

Plasma membrane Ca2+ ATPases as dynamic regulators of cellular calcium handling.

作者信息

Strehler Emanuel E, Caride Ariel J, Filoteo Adelaida G, Xiong Yuning, Penniston John T, Enyedi Agnes

机构信息

Department of Biochemistry and Molecular Biology, Mayo Clinic College of Medicine, 200 First Street S.W., Rochester, MN 55905, USA.

出版信息

Ann N Y Acad Sci. 2007 Mar;1099:226-36. doi: 10.1196/annals.1387.023.

Abstract

Plasma membrane Ca2+ ATPases (PMCAs) are essential components of the cellular toolkit to regulate and fine-tune cytosolic Ca2+ concentrations. Historically, the PMCAs have been assigned a housekeeping role in the maintenance of intracellular Ca2+ homeostasis. More recent work has revealed a perplexing multitude of PMCA isoforms and alternative splice variants, raising questions about their specific role in Ca2+ handling under conditions of varying Ca2+ loads. Studies on the kinetics of individual isoforms, combined with expression and localization studies suggest that PMCAs are optimized to function in Ca2+ regulation according to tissue- and cell-specific demands. Different PMCA isoforms help control slow, tonic Ca2+ signals in some cells and rapid, efficient Ca2+ extrusion in others. Localized Ca2+ handling requires targeting of the pumps to specialized cellular locales, such as the apical membrane of cochlear hair cells or the basolateral membrane of kidney epithelial cells. Recent studies suggest that alternatively spliced regions in the PMCAs are responsible for their unique targeting, membrane localization, and signaling cross-talk. The regulated deployment and retrieval of PMCAs from specific membranes provide a dynamic system for a cell to respond to changing needs of Ca2+ regulation.

摘要

质膜钙ATP酶(PMCAs)是细胞调节和微调胞质钙浓度工具包的重要组成部分。从历史上看,PMCA在维持细胞内钙稳态方面一直被赋予管家功能。最近的研究揭示了大量令人困惑的PMCA同工型和可变剪接变体,这引发了关于它们在不同钙负荷条件下钙处理中具体作用的问题。对单个同工型动力学的研究,结合表达和定位研究表明,PMCA根据组织和细胞的特定需求进行了优化,以在钙调节中发挥作用。不同的PMCA同工型有助于在某些细胞中控制缓慢、持续性的钙信号,而在其他细胞中控制快速、高效的钙排出。局部钙处理需要将泵靶向到特定的细胞区域,如耳蜗毛细胞的顶端膜或肾上皮细胞的基底外侧膜。最近的研究表明,PMCA中的可变剪接区域负责它们独特的靶向、膜定位和信号串扰。从特定膜上对PMCA进行调控的部署和回收为细胞提供了一个动态系统,以响应不断变化的钙调节需求。

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