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胰岛细胞中的 InsP₃ 受体和 Orai 通道:共定位及其后果。

InsP₃receptors and Orai channels in pancreatic acinar cells: co-localization and its consequences.

机构信息

Department of Cellular and Molecular Physiology, The University of Liverpool, Crown Street, Liverpool L69 3BX, UK.

出版信息

Biochem J. 2011 Jun 1;436(2):231-9. doi: 10.1042/BJ20110083.

Abstract

Orai1 proteins have been recently identified as subunits of SOCE (store-operated Ca²⁺ entry) channels. In primary isolated PACs (pancreatic acinar cells), Orai1 showed remarkable co-localization and co-immunoprecipitation with all three subtypes of IP₃Rs (InsP₃ receptors). The co-localization between Orai1 and IP₃Rs was restricted to the apical part of PACs. Neither co-localization nor co-immunoprecipitation was affected by Ca²⁺ store depletion. Importantly we also characterized Orai1 in basal and lateral membranes of PACs. The basal and lateral membranes of PACs have been shown previously to accumulate STIM1 (stromal interaction molecule 1) puncta as a result of Ca²⁺ store depletion. We therefore conclude that these polarized secretory cells contain two pools of Orai1: an apical pool that interacts with IP₃Rs and a basolateral pool that interacts with STIM1 following the Ca²⁺ store depletion. Experiments on IP₃R knockout animals demonstrated that the apical Orai1 localization does not require IP₃Rs and that IP₃Rs are not necessary for the activation of SOCE. However, the InsP₃-releasing secretagogue ACh (acetylcholine) produced a negative modulatory effect on SOCE, suggesting that activated IP₃Rs could have an inhibitory effect on this Ca²⁺ entry mechanism.

摘要

Orai1 蛋白最近被鉴定为 SOCE(储存操作的 Ca²⁺内流)通道的亚基。在原代分离的 PAC(胰腺腺泡细胞)中,Orai1 与所有三种亚型的 IP₃Rs(InsP₃ 受体)表现出显著的共定位和共免疫沉淀。Orai1 与 IP₃Rs 的共定位仅限于 PAC 的顶端部分。Ca²⁺ 储存耗竭既不影响共定位,也不影响共免疫沉淀。重要的是,我们还在 PAC 的基底和侧膜中对 Orai1 进行了特征描述。先前已经表明,PAC 的基底和侧膜会因 Ca²⁺ 储存耗竭而积累 STIM1(基质相互作用分子 1)斑点。因此,我们得出结论,这些极化分泌细胞包含两种 Orai1 池:一种与 IP₃Rs 相互作用的顶端池,另一种与 Ca²⁺ 储存耗竭后与 STIM1 相互作用的基底外侧池。在 IP₃R 敲除动物的实验中证明,顶端 Orai1 定位不需要 IP₃Rs,并且 IP₃Rs 对于 SOCE 的激活不是必需的。然而,InsP₃ 释放的促分泌剂 ACh(乙酰胆碱)对 SOCE 产生了负调节作用,表明激活的 IP₃Rs 可能对这种 Ca²⁺ 内流机制具有抑制作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c563/3262233/2072ad4d1912/bic126i001.jpg

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