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质膜-内质网接触位点的可视化和操作表明,STIM1-Orai1复合物中存在其他分子成分。

Visualization and manipulation of plasma membrane-endoplasmic reticulum contact sites indicates the presence of additional molecular components within the STIM1-Orai1 Complex.

作者信息

Várnai Péter, Tóth Balázs, Tóth Dániel J, Hunyady László, Balla Tamas

机构信息

Section on Molecular Signal Transduction, NICHD, National Institutes of Health, Bethesda, Maryland 20892-4510, USA.

出版信息

J Biol Chem. 2007 Oct 5;282(40):29678-90. doi: 10.1074/jbc.M704339200. Epub 2007 Aug 7.

Abstract

STIM1, a recently identified endoplasmic reticulum (ER) protein, rapidly translocates to a plasma membrane-adjacent ER compartment upon depletion of the ER Ca(2+) stores. Here we use a novel means, namely a chemically inducible bridge formation between the plasma and ER membranes, to highlight the plasma membrane-adjacent ER compartment and show that this is the site where STIM1 and its Ca(2+) channel partner, Orai1, form a productive interaction upon store depletion. By changing the length of the linkers connecting the plasma and ER membranes, we show that Orai1 requires a larger space than STIM1 between the two membranes. This finding suggests that Orai1 is part of a larger macromolecular cluster with an estimated 11-14-nm protrusion to the cytoplasm, whereas the cytoplasmic domain of STIM1 fits in a space calculated to be less than 6 nm. We finally show that agonist-induced translocation of STIM1 is rapidly reversible and only partially affects STIM1 in the juxtanuclear ER compartment. These studies are the first to detect juxtaposed areas between the ER and the plasma membrane in live cells, revealing novel details of STIM1-Orai1 interactions.

摘要

基质相互作用分子1(STIM1)是一种最近被鉴定出的内质网(ER)蛋白,在内质网Ca(2+)储存耗尽时,它会迅速转移到与质膜相邻的内质网区域。在这里,我们使用一种新方法,即通过化学诱导在质膜和内质网膜之间形成桥接,来突出与质膜相邻的内质网区域,并表明这是STIM1及其Ca(2+)通道伴侣Orai1在储存耗尽时形成有效相互作用的位点。通过改变连接质膜和内质网膜的接头长度,我们发现Orai1在两层膜之间需要比STIM1更大的空间。这一发现表明,Orai1是一个更大的大分子簇的一部分,该簇向细胞质突出约11 - 14纳米,而STIM1的细胞质结构域适合于一个计算得出小于6纳米的空间。我们最终表明,激动剂诱导的STIM1易位是迅速可逆的,并且仅部分影响核周内质网区域中的STIM1。这些研究首次在活细胞中检测到内质网和质膜之间的并列区域,揭示了STIM1 - Orai1相互作用的新细节。

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