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不依赖钙离子的磷脂酶A2是储存式钙离子内流的一种新决定因素。

Ca2+-independent phospholipase A2 is a novel determinant of store-operated Ca2+ entry.

作者信息

Smani Tarik, Zakharov Sergey I, Leno Endri, Csutora Peter, Trepakova Elena S, Bolotina Victoria M

机构信息

Boston University School of Medicine, Boston, Massachusetts 02118, USA.

出版信息

J Biol Chem. 2003 Apr 4;278(14):11909-15. doi: 10.1074/jbc.M210878200. Epub 2003 Jan 23.

DOI:10.1074/jbc.M210878200
PMID:12547829
Abstract

Store-operated cation (SOC) channels and capacitative Ca(2+) entry (CCE) play very important role in cellular function, but the mechanism of their activation remains one of the most intriguing and long lasting mysteries in the field of Ca(2+) signaling. Here, we present the first evidence that Ca(2+)-independent phospholipase A(2) (iPLA(2)) is a crucial molecular determinant in activation of SOC channels and store-operated Ca(2+) entry pathway. Using molecular, imaging, and electrophysiological techniques, we show that directed molecular or pharmacological impairment of the functional activity of iPLA(2) leads to irreversible inhibition of CCE mediated by nonselective SOC channels and by Ca(2+)-release-activated Ca(2+) (CRAC) channels. Transfection of vascular smooth muscle cells (SMC) with antisense, but not sense, oligonucleotides for iPLA(2) impaired thapsigargin (TG)-induced activation of iPLA(2) and TG-induced Ca(2+) and Mn(2+) influx. Identical inhibition of TG-induced Ca(2+) and Mn(2+) influx (but not Ca(2+) release) was observed in SMC, human platelets, and Jurkat T-lymphocytes when functional activity of iPLA(2) was inhibited by its mechanism-based suicidal substrate, bromoenol lactone (BEL). Moreover, irreversible inhibition of iPLA(2) impaired TG-induced activation of single nonselective SOC channels in SMC and BAPTA (1,2-bis(2-aminophenoxy)ethane-N,N,N',N'-tetraacetic acid)-induced activation of whole-cell CRAC current in rat basophilic leukemia cells. Thus, functional iPLA(2) is required for activation of store-operated channels and capacitative Ca(2+) influx in wide variety of cell types.

摘要

储存性阳离子(SOC)通道和容量性钙内流(CCE)在细胞功能中发挥着非常重要的作用,但其激活机制仍是钙信号领域最引人入胜且长期存在的谜团之一。在此,我们首次证明,非钙依赖性磷脂酶A2(iPLA2)是SOC通道激活和储存性钙内流途径中的关键分子决定因素。利用分子、成像和电生理技术,我们发现iPLA2功能活性的定向分子或药理学损伤会导致非选择性SOC通道和钙释放激活钙(CRAC)通道介导的CCE不可逆抑制。用iPLA2的反义而非正义寡核苷酸转染血管平滑肌细胞(SMC)会损害毒胡萝卜素(TG)诱导的iPLA2激活以及TG诱导的钙和锰内流。当iPLA2的功能活性被其基于机制的自杀性底物溴苯烯内酯(BEL)抑制时,在SMC、人血小板和Jurkat T淋巴细胞中观察到对TG诱导的钙和锰内流(但不是钙释放)的相同抑制。此外,iPLA2的不可逆抑制损害了SMC中TG诱导的单个非选择性SOC通道的激活以及大鼠嗜碱性白血病细胞中BAPTA(1,2 - 双(2 - 氨基苯氧基)乙烷 - N,N,N',N' - 四乙酸)诱导的全细胞CRAC电流的激活。因此,功能性iPLA2是多种细胞类型中储存性通道激活和容量性钙内流所必需的。

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