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ORAI1假定的卷曲螺旋结构域与STIM1的动态偶联介导了ORAI1通道的激活。

Dynamic coupling of the putative coiled-coil domain of ORAI1 with STIM1 mediates ORAI1 channel activation.

作者信息

Muik Martin, Frischauf Irene, Derler Isabella, Fahrner Marc, Bergsmann Judith, Eder Petra, Schindl Rainer, Hesch Clemens, Polzinger Bernhard, Fritsch Reinhard, Kahr Heike, Madl Josef, Gruber Hermann, Groschner Klaus, Romanin Christoph

机构信息

Institute of Biophysics, University of Linz, A-4040 Linz, Austria.

出版信息

J Biol Chem. 2008 Mar 21;283(12):8014-22. doi: 10.1074/jbc.M708898200. Epub 2008 Jan 10.

Abstract

STIM1 and ORAI1 (also termed CRACM1) are essential components of the classical calcium release-activated calcium current; however, the mechanism of the transmission of information of STIM1 to the calcium release-activated calcium/ORAI1 channel is as yet unknown. Here we demonstrate by Förster resonance energy transfer microscopy a dynamic coupling of STIM1 and ORAI1 that culminates in the activation of Ca(2+) entry. Förster resonance energy transfer imaging of living cells provided insight into the time dependence of crucial events of this signaling pathway comprising Ca(2+) store depletion, STIM1 multimerization, and STIM1-ORAI1 interaction. Accelerated store depletion allowed resolving a significant time lag between STIM1-STIM1 and STIM1-ORAI1 interactions. Store refilling reversed both STIM1 multimerization and STIM1-ORAI1 interaction. The cytosolic STIM1 C terminus itself was able, in vitro as well as in vivo, to associate with ORAI1 and to stimulate channel function, yet without ORAI1-STIM1 cluster formation. The dynamic interaction occurred via the C terminus of ORAI1 that includes a putative coiled-coil domain structure. An ORAI1 C terminus deletion mutant as well as a mutant (L273S) with impeded coiled-coil domain formation lacked both interaction as well as functional communication with STIM1 and failed to generate Ca(2+) inward currents. An N-terminal deletion mutant of ORAI1 as well as the ORAI1 R91W mutant linked to severe combined immune deficiency syndrome was similarly impaired in terms of current activation despite being able to interact with STIM1. Hence, the C-terminal coiled-coil motif of ORAI1 represents a key domain for dynamic coupling to STIM1.

摘要

基质相互作用分子1(STIM1)和Orai1(也称为钙释放激活钙调蛋白1,CRACM1)是经典钙释放激活钙电流的重要组成部分;然而,STIM1向钙释放激活钙/Orai1通道传递信息的机制尚不清楚。在此,我们通过荧光共振能量转移显微镜证明了STIM1和Orai1的动态偶联,这种偶联最终导致钙离子内流的激活。活细胞的荧光共振能量转移成像为该信号通路关键事件的时间依赖性提供了深入了解,这些关键事件包括钙库耗竭、STIM1多聚化以及STIM1 - Orai1相互作用。加速的钙库耗竭使得能够分辨出STIM1 - STIM1和STIM1 - Orai1相互作用之间的显著时间滞后。钙库再填充逆转了STIM1多聚化和STIM1 - Orai1相互作用。胞质中的STIM1 C末端本身在体外和体内都能够与Orai1结合并刺激通道功能,但不会形成Orai1 - STIM1簇。动态相互作用通过Orai1的C末端发生,该末端包含一个假定的卷曲螺旋结构域。Orai1 C末端缺失突变体以及卷曲螺旋结构域形成受阻的突变体(L273S)既缺乏与STIM1的相互作用,也缺乏功能联系,无法产生钙离子内向电流。尽管能够与STIM1相互作用,但Orai1的N末端缺失突变体以及与严重联合免疫缺陷综合征相关的Orai1 R91W突变体在电流激活方面同样受损。因此,Orai1的C末端卷曲螺旋基序是与STIM1动态偶联的关键结构域。

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