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Orai1内化和STIM1聚集抑制在减数分裂过程中调节 store-operated calcium entry (SOCE)失活。

Orai1 internalization and STIM1 clustering inhibition modulate SOCE inactivation during meiosis.

作者信息

Yu Fang, Sun Lu, Machaca Khaled

机构信息

Department of Physiology and Biophysics, Weill Cornell Medical College in Qatar (WCMC-Q), Education City-Qatar Foundation, Doha, Qatar.

出版信息

Proc Natl Acad Sci U S A. 2009 Oct 13;106(41):17401-6. doi: 10.1073/pnas.0904651106. Epub 2009 Sep 30.

Abstract

Store-operated Ca(2+) entry (SOCE) is a ubiquitous Ca(2+) influx pathway activated in response to depletion of intracellular Ca(2+) stores. SOCE is a primary modulator of intracellular Ca(2+) dynamics, which specify cellular responses. Interestingly, SOCE inactivates during M phase but the mechanisms involved remain unclear. SOCE is mediated by clustering of the ER Ca(2+) sensor STIM1 in response to Ca(2+) store depletion, leading to gating of the plasma membrane SOCE channel Orai1. Here we show that SOCE inactivation in meiosis is the result of internalization of Orai1 into an intracellular vesicular compartment and to the inability of STIM1 to cluster in response to store depletion. At rest, Orai1 continuously recycles between the cell membrane and an endosomal compartment. We further show that STIM1-STIM1 interactions are inhibited during meiosis, which appears to mediate the inability of STIM1 to form puncta following store depletion. In contrast, STIM1-Orai1 interactions remain functional during meiosis. Combined, the removal of Orai1 from the cell membrane and STIM1 clustering inhibition effectively uncouple store depletion from SOCE activation in meiosis. Although STIM1 is phosphorylated during meiosis, phosphomimetic and alanine substitution mutations do not modulate STIM1 clustering, arguing that phosphorylation does not mediate STIM1 clustering inhibition during meiosis.

摘要

store-operated Ca(2+) entry (SOCE) 是一种普遍存在的Ca(2+) 内流途径,在细胞内Ca(2+) 储存耗尽时被激活。SOCE是细胞内Ca(2+) 动态变化的主要调节因子,决定细胞反应。有趣的是,SOCE在M期失活,但其涉及的机制仍不清楚。SOCE由内质网Ca(2+) 传感器STIM1聚集介导,以响应Ca(2+) 储存耗尽,导致质膜SOCE通道Orai1开启。在这里,我们表明减数分裂过程中SOCE失活是Orai1内化到细胞内囊泡区室的结果,也是STIM1在储存耗尽时无法聚集的结果。在静止状态下,Orai1在细胞膜和内体区室之间持续循环。我们进一步表明,减数分裂过程中STIM1-STIM1相互作用受到抑制,这似乎介导了STIM1在储存耗尽后无法形成点状结构。相比之下,减数分裂过程中STIM1-Orai1相互作用仍然起作用。综合起来,从细胞膜上移除Orai1和抑制STIM1聚集有效地使减数分裂过程中储存耗尽与SOCE激活解偶联。尽管减数分裂过程中STIM1被磷酸化,但模拟磷酸化和丙氨酸替代突变并不调节STIM1聚集,这表明磷酸化在减数分裂过程中不介导STIM1聚集抑制。

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