Soboloff Jonathan, Spassova Maria A, Dziadek Marie A, Gill Donald L
Department of Biochemistry and Molecular Biology, University of Maryland School of Medicine, 108 North Greene Street, Baltimore, MD 21201, USA.
Biochim Biophys Acta. 2006 Nov;1763(11):1161-8. doi: 10.1016/j.bbamcr.2006.09.023. Epub 2006 Sep 20.
In all cells Ca2+ signals are key to controlling a spectrum of cellular responses. Ca2+ signals activated by phospholipase C-coupled receptors have two components-rapid Ca2+ release from ER stores followed by slower Ca2+ entry from outside the cell. The coupling process between ER and PM to mediate this "store-operated" Ca2+ entry process has remained a molecular and mechanistic mystery. Through a combination of high throughput screening and molecular physiological approaches, the machinery and mechanism of this process have been elucidated. Two proteins are key to the coupling process. STIM1, a single spanning membrane protein with an unpaired Ca2+ binding EF-hand functions as the sensor of ER luminal Ca2+ and through redistribution in the ER transduces information directly to the PM. Orai1, a tetra-spanning PM protein, functions as the highly Ca2+ selective channel in the PM that is gated through interactions with the store-activated ER Ca2+ sensor. This molecular pas-de-deux between ER and PM components represents not only a crucial signaling pathway, but also a new paradigm in inter-organelle communication.
在所有细胞中,Ca2+信号是控制一系列细胞反应的关键。由磷脂酶C偶联受体激活的Ca2+信号有两个组成部分——内质网储存库中Ca2+的快速释放,随后是细胞外Ca2+的缓慢内流。内质网与质膜之间介导这种“储存-操纵性”Ca2+内流过程的偶联过程,在分子和机制方面一直是个谜。通过高通量筛选和分子生理学方法的结合,这一过程的机制和原理已被阐明。两种蛋白质是偶联过程的关键。STIM1是一种单次跨膜蛋白,具有一个未配对的Ca2+结合EF手结构域,作为内质网腔Ca2+的传感器,并通过在内质网中的重新分布将信息直接传递到质膜。Orai1是一种四次跨膜的质膜蛋白,作为质膜中高度Ca2+选择性通道,通过与储存激活的内质网Ca2+传感器相互作用而门控。内质网和质膜成分之间的这种分子双人舞不仅代表了一条关键的信号通路,也是细胞器间通讯的一种新范式。