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BKCa 通道与 SOC 通道的功能偶联。

Functional coupling between BKCa and SOC channels.

机构信息

Department of Anatomy, Tongji Medical College of Huazhong University of Science and Technology, Wuhan, Hubei 430030, China; Department of Anatomy, Hubei Minzu University, Enshi, Hubei 445000, China.

Department of Anatomy, Tongji Medical College of Huazhong University of Science and Technology, Wuhan, Hubei 430030, China.

出版信息

Tissue Cell. 2020 Oct;66:101394. doi: 10.1016/j.tice.2020.101394. Epub 2020 Jun 3.

Abstract

High-conductance, voltage- and calcium-activated potassium channels (BKCa) and store-operated calcium channels (SOCs) are belong to K channels superfamily and calcium channels superfamily respectively. Since BKCa potassium channels can be activated by calcium ions, we set out to examine whether SOCs are coupled with BKCa and to probe the relationship of BKCa and SOCs. First, we proved that BKCa immunoprecipitated with Orai1, and confocal microscopy showed that BKCa co-localized with Orai1. Next, we mapped that the exact binding sites locate in the 350aa-371aa fragment of the first regulatory domain associated with K conduction (RCK1) and the 720aa-814aa fragment in the second regulatory domain associated with K conduction (RCK2) via GST-pull-down assays. Then, we showed, by calcium imaging that BKCa overexpression enhanced endogenous and exogenous store-operated calcium entry (SOCE) and this enhancement could be blocked by Orai1 knockdown. Finally, we proved that SOCE could enhance the activity of BKCa by patch-clamp. From these results we conclude that BKCa can form a positive feedback loop with SOCs, as the Ca influx from SOCs can active BKCa, which can hyperpolarize the plasma membrane. In turn, the hyperpolarized membrane will form a higher electric potential difference and give more force, allowing Ca influx via SOCs.

摘要

高电导、电压和钙激活钾通道(BKCa)和储存操纵钙通道(SOCs)分别属于钾通道超家族和钙通道超家族。由于 BKCa 钾通道可以被钙离子激活,我们开始研究 SOCs 是否与 BKCa 偶联,并探讨 BKCa 和 SOCs 之间的关系。首先,我们证明了 BKCa 与 Orai1 免疫沉淀,共聚焦显微镜显示 BKCa 与 Orai1 共定位。接下来,我们通过 GST-pull-down 实验,映射到确切的结合位点位于与 K 传导相关的第一个调节域(RCK1)的 350aa-371aa 片段和与 K 传导相关的第二个调节域(RCK2)的 720aa-814aa 片段。然后,我们通过钙成像表明,BKCa 的过表达增强了内源性和外源性储存操纵的钙内流(SOCE),并且这种增强可以被 Orai1 敲低所阻断。最后,我们通过膜片钳证明了 SOCE 可以通过激活 BKCa 来增强其活性。从这些结果中我们得出结论,BKCa 可以与 SOCs 形成正反馈回路,因为 SOCs 中的 Ca 内流可以激活 BKCa,从而使质膜超极化。反过来,超极化的膜将形成更高的电势差,并提供更大的力,允许通过 SOCs 进行 Ca 内流。

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