Department of Physiology and Biophysics, Weill Cornell Medical College in Qatar, Qatar Foundation, Education City, Doha, Qatar.
J Cell Sci. 2013 Jun 1;126(Pt 11):2401-10. doi: 10.1242/jcs.117200. Epub 2013 Apr 9.
Store-operated calcium entry (SOCE) represents a major calcium influx pathway in non-excitable cells and is central to many physiological processes such as T cell activation and mast cell degranulation. SOCE is activated through intricate coordination between the Ca(2+) sensor on the ER membrane (stromal interaction molecule 1, STIM1) and the plasma membrane channel Orai1. When Ca(2+) stores are depleted, STIM1 oligomerizes and physically interacts with Orai1 through its SOAR/CAD domain, resulting in Orai1 gating and Ca(2+) influx. Here, we describe novel inter- and intramolecular FRET sensors in the context of the full-length membrane-anchored STIM1, and show that STIM1 undergoes a conformational change in response to store depletion to adopt a stretched 'open' conformation that exposes SOAR/CAD and allows it to interact with Orai1. Mutational analyses reveal that electrostatic interactions between the predicted first and third coiled-coil domains of STIM1 are not involved in maintaining the 'closed' inactive conformation. In addition, the results argue that an amphipathic α-helix between residues 317 and 336 in the so-called inhibitory domain is important to maintain STIM1 in a closed conformation at rest. Indeed, mutations that alter the amphipathic properties of this helix result in a STIM1 variant that is unable to respond to store depletion in terms of forming puncta, translocation to the cortical ER or activating Orai1.
钙库操纵性钙内流(SOCE)是无兴奋细胞中主要的钙内流途径,是许多生理过程的核心,如 T 细胞激活和肥大细胞脱颗粒。SOCE 通过内质网膜上的钙传感器(基质相互作用分子 1,STIM1)和质膜通道 Orai1 之间的复杂协调来激活。当钙储存耗尽时,STIM1 寡聚化并通过其 SOAR/CAD 结构域与 Orai1 物理相互作用,导致 Orai1 门控和钙内流。在这里,我们在全长膜锚定 STIM1 的背景下描述了新型的分子内和分子间的 FRET 传感器,并表明 STIM1 会发生构象变化以响应钙库耗竭,从而采用伸展的“开放”构象,暴露 SOAR/CAD 并允许其与 Orai1 相互作用。突变分析表明,STIM1 的预测第一和第三卷曲螺旋结构域之间的静电相互作用不参与维持“关闭”的非活性构象。此外,结果表明,所谓的抑制域中残基 317 和 336 之间的两亲性α-螺旋对于维持 STIM1 在静止时处于关闭构象很重要。事实上,改变该螺旋的两亲性特性的突变会导致 STIM1 变体无法响应钙库耗竭,无法形成点状结构、向皮质 ER 易位或激活 Orai1。