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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Fine-tuning of store-operated calcium entry by fast and slow Ca2+-dependent inactivation: Involvement of SARAF
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Fine-tuning of store-operated calcium entry by fast and slow Ca2+-dependent inactivation: Involvement of SARAF

机译:通过快速和缓慢的CA2 +依赖性灭活进行储存钙入口的微调:萨拉夫的参与

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摘要

Store-operated Ca2+ entry (SOCE) is a functionally relevant mechanism for Ca2+ influx present in electrically excitable and non-excitable cells. Regulation of Ca2+ entry through store-operated channels is essential to maintain an appropriate intracellular Ca2+ homeostasis and prevent cell damage. Calcium-release activated channels exhibit Ca2+-dependent inactivation mediated by two temporally separated mechanisms: fast Ca2+-dependent inactivation takes effect in the order of milliseconds and involves the interaction of Ca2+ with residues in the channel pore while slow Ca2+-dependent inactivation (SCDI) develops over tens of seconds, requires a global rise in [Ca2+](cyt) and is a mechanism regulated by mitochondria. Recent studies have provided evidence that the protein SARAF (SOCE-associated regulatory factor) is involved in the mechanism underlying SCDI of Orail. SARAF is an endoplasmic reticulum (ER) membrane protein that associates with STIM1 and translocate to plasma membrane-ER junctions in a STIM1-dependent manner upon store depletion to modulate SOCE. SCDI mediated by SARAF depends on the location of the STIM1-Orail complex within a PI(4,5)P2-rich microdomain. SARAF also interacts with Orail and TRPC1 in cells endogenously expressing STIM1 and cells with a low STIM1 expression and modulates channel function. This review focuses on the modulation by SARAF of SOCE and other forms of Ca2+ influx mediated by Orail and TRPC1 in order to provide spatio-temporally regulated Ca2+ signals.
机译:存储操作的CA2 +条目(SOCE)是一种功能相关的电力易于易激发细胞中的CA2 +流入的机制。通过储存频道的CA2 +进入的调节对于维持适当的细胞内Ca2 +稳态并预防细胞损伤至关重要。钙释放活性通道表现出由两个时间分离机制介导的Ca2 +依赖性灭活:快速Ca2 +依赖性灭活以毫秒的顺序生效,并且涉及Ca2 +与通道孔中残留物的相互作用,而缓慢Ca2 +依赖性灭活(SCDI)在几十秒内发展,需要全局升高(Cyt),是由线粒体调节的机制。最近的研究提供了证据表明蛋白质萨拉夫(脱氧核酸相关的调节因子)参与了逆转录的SCDI的机制。 Saraf是一种内质网(ER)膜蛋白,其与STIM1相关联,并在储存耗尽时以STIM1依赖性方式易于旋转到血浆膜-ER连接点以调节SOCE。 SCDI由Saraf介导的含量在PI(4,5)富含P2的富含Microdomain内的Stim1-Orail络合物的位置。 Saraf还与细胞内源性表达STIM1和具有低溶性表达的细胞的细胞和TRPC1相互作用,并调节通道功能。本综述重点介绍了由OraI和TRPC1介导的SOCE和其他形式的CA2 +涌入的调制,以便提供时空调节的CA2 +信号。

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