SARAF对钙释放活化钙(CRAC)通道的双向调控。

The Journal of Cell Biology Pub Date : 2021-12-06 Epub Date: 2021-10-27 DOI:10.1083/jcb.202104007
Elia Zomot, Hadas Achildiev Cohen, Inbal Dagan, Ruslana Militsin, Raz Palty
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引用次数: 13

摘要

通过Ca2+释放激活Ca2+ (CRAC)通道的储存操作钙进入(SOCE)是细胞产生Ca2+信号和介导Ca2+依赖性基因表达的中心机制。ssoc相关调控因子(SARAF)调控CRAC通道的分子基础仍未得到充分的了解。在这里,我们发现在ER Ca2+耗尽后,SARAF促进了ER Ca2+传感器STIM1的构象变化,从而缓解了STIM1失活结构域(ID;aa 475-483),并促进STIM1的初始激活,其向er -质膜连接的易位,以及与Orai1通道的偶联。在细胞内Ca2+升高后,SARAF和STIM1 ID之间的合作控制了CRAC通道缓慢的Ca2+依赖性失活。我们进一步表明,在T淋巴细胞中,SARAF是适当的T细胞受体诱发转录所必需的。综合所有这些数据,我们揭示了SARAF在CRAC通道激活和失活过程中的双重调节作用,并表明SARAF微调细胞内Ca2+反应和细胞内下游基因表达。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Bidirectional regulation of calcium release-activated calcium (CRAC) channel by SARAF.

Bidirectional regulation of calcium release-activated calcium (CRAC) channel by SARAF.

Bidirectional regulation of calcium release-activated calcium (CRAC) channel by SARAF.

Bidirectional regulation of calcium release-activated calcium (CRAC) channel by SARAF.

Store-operated calcium entry (SOCE) through the Ca2+ release-activated Ca2+ (CRAC) channel is a central mechanism by which cells generate Ca2+ signals and mediate Ca2+-dependent gene expression. The molecular basis for CRAC channel regulation by the SOCE-associated regulatory factor (SARAF) remained insufficiently understood. Here we found that following ER Ca2+ depletion, SARAF facilitates a conformational change in the ER Ca2+ sensor STIM1 that relieves an activation constraint enforced by the STIM1 inactivation domain (ID; aa 475-483) and promotes initial activation of STIM1, its translocation to ER-plasma membrane junctions, and coupling to Orai1 channels. Following intracellular Ca2+ rise, cooperation between SARAF and the STIM1 ID controls CRAC channel slow Ca2+-dependent inactivation. We further show that in T lymphocytes, SARAF is required for proper T cell receptor evoked transcription. Taking all these data together, we uncover a dual regulatory role for SARAF during both activation and inactivation of CRAC channels and show that SARAF fine-tunes intracellular Ca2+ responses and downstream gene expression in cells.

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