植物Ca2+泵的多样性和调控:来自酵母表达的见解。

H. Sze, F. Liang, Ildoo Hwang, A. Curran, J. Harper
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引用次数: 304

摘要

植物细胞内钙离子浓度的时空调控依赖于位于不同细胞器和细胞膜上的通道和活性转运体的协同活动。在酵母突变体(K616)中发现了几种Ca2+泵,并通过植物基因的功能表达进行了表征。该表达系统为多种Ca2+泵的调控和催化特性的遗传和生化表征开辟了道路。植物Ca(2+)- atp酶分为两种主要类型:AtECA1是拟南芥中IIA型(er型)Ca(2+)- atp酶的四个或多个成员之一,AtACA2是IIB型(pm型)Ca(2+)- atp酶的七个或多个成员之一,由一个新的氨基末端结构域调节。IIB型泵广泛分布于膜上,包括PM(质膜)、液泡和ER(内质网)。调节结构域具有多种功能,包括自抑制、钙调蛋白结合和磷酸化修饰位点。然而,该结构域在几种IIB型atp酶中差异很大,这表明泵受到不同的调节。在分子水平上对Ca2+转运体的理解提供了对它们在信号网络和调节细胞生物学基本过程中的作用的见解。
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Diversity and regulation of plant Ca2+ pumps: insights from expression in yeast.
The spatial and temporal regulation of calcium concentration in plant cells depends on the coordinate activities of channels and active transporters located on different organelles and membranes. Several Ca2+ pumps have been identified and characterized by functional expression of plant genes in a yeast mutant (K616). This expression system has opened the way to a genetic and biochemical characterization of the regulatory and catalytic features of diverse Ca2+ pumps. Plant Ca(2+)-ATPases fall into two major types: AtECA1 represents one of four or more members of the type IIA (ER-type) Ca(2+)-ATPases in Arabidopsis, and AtACA2 is one of seven or more members of the type IIB (PM-type) Ca(2+)-ATPases that are regulated by a novel amino terminal domain. Type IIB pumps are widely distributed on membranes, including the PM (plasma membrane), vacuole, and ER (endoplasmic reticulum). The regulatory domain serves multiple functions, including autoinhibition, calmodulin binding, and sites for modification by phosphorylation. This domain, however, is considerably diverse among several type IIB ATPases, suggesting that the pumps are differentially regulated. Understanding of Ca2+ transporters at the molecular level is providing insights into their roles in signaling networks and in regulating fundamental processes of cell biology.
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