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储存式钙通道:多样性与激活机制

Store-operated channels: diversity and activation mechanisms.

作者信息

Bolotina Victoria M

机构信息

Boston University School of Medicine, 650 Albany Street, X-704, Boston, MA 02118, USA.

出版信息

Sci STKE. 2004 Jul 20;2004(243):pe34. doi: 10.1126/stke.2432004pe34.

Abstract

This perspective addresses two questions: How many store-operated channels (SOCs) are there, and how many mechanisms can account for SOC activation by depleted stores? Accumulating evidence suggests that the SOC family is not limited to the calcium-selective SOC that is responsible for ICRAC (Ca2+-SOC), but includes poorly selective cation SOCs (cat-SOCs) that may satisfy physiological needs in diverse excitable and nonexcitable cells. A growing number of studies in different cell types support the idea that all the members of SOC family (Ca2+-SOC and cat-SOC) may be activated by depletion of the stores through the same mechanism, which is mediated by calcium influx factor (CIF) and calcium-independent phospholipase A2 (iPLA2). A conformational coupling model is also discussed. To account for the most recent findings, we propose that two distinct classes of calcium-conducting channels may exist in plasma membrane, which respond to different signals: SOCs, which are activated by depletion of calcium stores through the CIF-iPLA2 mechanism [no inositol triphosphate (IP3) needed]; and IP3 receptor-operated channels (IP3ROCs), which are activated by IP3 receptor through a direct coupling mechanism (no store depletion is needed). This model, with two separate mechanisms linked to different channels, may resolve many conflicting findings and interpretations and may give a new perspective on the diversity of calcium influx pathways.

摘要

本文探讨了两个问题

存在多少种储存操纵性通道(SOCs),以及有多少种机制可解释储存耗尽导致的SOC激活?越来越多的证据表明,SOC家族并不局限于负责ICRAC(Ca2+ - SOC)的钙选择性SOC,还包括选择性较差的阳离子SOC(cat - SOCs),它们可能满足多种可兴奋和不可兴奋细胞中的生理需求。针对不同细胞类型的越来越多的研究支持这样一种观点,即SOC家族的所有成员(Ca2+ - SOC和cat - SOC)可能通过相同的机制被储存耗尽激活,该机制由钙内流因子(CIF)和钙非依赖性磷脂酶A2(iPLA2)介导。还讨论了一种构象偶联模型。为了解释最新的研究结果,我们提出质膜中可能存在两类不同的钙传导通道,它们对不同信号作出反应:SOCs,通过CIF - iPLA2机制被钙储存耗尽激活(无需肌醇三磷酸(IP3));以及IP3受体操纵性通道(IP3ROCs),通过直接偶联机制被IP3受体激活(无需储存耗尽)。这个模型,有两种与不同通道相关的独立机制,可能解决许多相互矛盾的研究结果和解释,并可能为钙内流途径的多样性提供新的视角。

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