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钙网蛋白是内质网上的一种钙结合蛋白,它改变了钙释放激活钙(CRAC)通道的离子通透性。

Calumin, a Ca²⁺-binding protein on the endoplasmic reticulum, alters the ion permeability of Ca²⁺ release-activated Ca²⁺ (CRAC) channels.

机构信息

Department of Molecular Pharmacology, Graduate School of Pharmaceutical Sciences, Kyoto University, Kyoto 606-8501, Japan.

出版信息

Biochem Biophys Res Commun. 2012 Jan 13;417(2):784-9. doi: 10.1016/j.bbrc.2011.12.035. Epub 2011 Dec 16.

Abstract

Store-operated channels (SOC) are Ca(2+)-permeable channels that are activated by IP(3)-receptor-mediated Ca(2+) depletion of the endoplasmic reticulum (ER). Recent studies identify a membrane pore subunits, Orai1 and a Ca(2+) sensor on ER, STIM1 as components of Ca(2+) release-activated Ca(2+) (CRAC) channels, which are well-characterized SOCs. On the other hand, proteins that act as modulators of SOC activity remain to be identified. Calumin is a Ca(2+)-binding protein that resides on the ER and functional experiments using calumin-null mice demonstrate that it is involved in SOC function, although its role is unknown. This study used electrophysiological analysis to explore whether calumin modulates CRAC channel activity. CRAC channel currents were absent in HEK293 cells co-expressing calumin with the CRAC channel components, Orai1 or STIM1. Meanwhile, HEK cells that co-expressed calumin with CRAC channels exhibited larger currents with slower inactivation than cells expressing CRAC channels alone. The current-voltage relationship showed an inwardly rectifying current, but a negative shift in the reversal potential of greater than 60mV was observed in HEK cells co-expressing calumin with CRAC channels. In addition, the permeability coefficient ratio of Ca(2+) over monovalent cations was much lower than that of cells expressing CRAC channels alone. Replacement of Na(+) with N-methyl-d-glucamine(+) in the external solution noticeably diminished the CRAC current in HEK cells co-expressing calumin and CRAC channels. In a Cs(+)-based external solution, CRAC current was not observed in either cell-type. In addition, Ca(2+) imaging analysis revealed that co-transfection of calumin reduced extracellular Ca(2+) influx via CRAC channels. Further, calumin was shown to be directly associated with CRAC channels. These results reveal a novel mechanism for the regulation of CRAC channels by calumin.

摘要

钙库操纵型通道(SOC)是一种由 IP3 受体介导的内质网(ER)内钙离子耗竭激活的钙离子通透性通道。最近的研究确定了一种膜孔亚基,Orai1 和 ER 上的钙离子传感器 STIM1,作为 Ca2+释放激活的 Ca2+(CRAC)通道的组成部分,这是一种特征明确的 SOC。另一方面,作为 SOC 活性调节剂的蛋白质仍有待确定。钙调蛋白是一种驻留在 ER 上的 Ca2+结合蛋白,使用钙调蛋白缺失小鼠进行的功能实验表明,它参与 SOC 功能,尽管其作用尚不清楚。本研究使用电生理学分析方法来探索钙调蛋白是否调节 CRAC 通道活性。在共表达 CRAC 通道成分 Orai1 或 STIM1 的 HEK293 细胞中,CRAC 通道电流缺失。同时,与仅表达 CRAC 通道的细胞相比,共表达钙调蛋白与 CRAC 通道的 HEK 细胞表现出更大的电流,失活较慢。电流-电压关系显示出内向整流电流,但在共表达钙调蛋白与 CRAC 通道的 HEK 细胞中观察到反转电位的负移超过 60mV。此外,钙调蛋白与 CRAC 通道共表达的细胞的 Ca2+对单价阳离子的渗透系数比仅表达 CRAC 通道的细胞低得多。在外部溶液中用 N-甲基-D-葡萄糖胺(+)代替 Na+,可明显减少共表达钙调蛋白和 CRAC 通道的 HEK 细胞中的 CRAC 电流。在基于 Cs+的外部溶液中,两种细胞类型均未观察到 CRAC 电流。此外,钙成像分析显示,钙调蛋白的共转染减少了通过 CRAC 通道的细胞外 Ca2+内流。此外,还表明钙调蛋白与 CRAC 通道直接相关。这些结果揭示了钙调蛋白调节 CRAC 通道的新机制。

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