Department of Physiology and Pharmacology, Schulich School of Medicine and Dentistry, The University of Western Ontario, 1151 Richmond Street, London, ON N6A 5C1, Canada.
Int J Mol Sci. 2018 Oct 25;19(11):3316. doi: 10.3390/ijms19113316.
Stromal interaction molecule (STIM)-1 and -2 regulate agonist-induced and basal cytosolic calcium (Ca) levels after oligomerization and translocation to endoplasmic reticulum (ER)-plasma membrane (PM) junctions. At these junctions, the STIM cytosolic coiled-coil (CC) domains couple to PM Orai1 proteins and gate these Ca release-activated Ca (CRAC) channels, which facilitate store-operated Ca entry (SOCE). Unlike STIM1 and STIM2, which are SOCE activators, the STIM2β splice variant contains an 8-residue insert located within the conserved CCs which inhibits SOCE. It remains unclear if the 2β insert further depotentiates weak STIM2 coupling to Orai1 or independently causes structural perturbations which prevent SOCE. Here, we use far-UV circular dichroism, light scattering, exposed hydrophobicity analysis, solution small angle X-ray scattering, and a chimeric STIM1/STIM2β functional assessment to provide insights into the molecular mechanism by which the 2β insert precludes SOCE activation. We find that the 2β insert reduces the overall α-helicity and enhances the exposed hydrophobicity of the STIM2 CC domains in the absence of a global conformational change. Remarkably, incorporation of the 2β insert into the STIM1 context not only affects the secondary structure and hydrophobicity as observed for STIM2, but also eliminates the more robust SOCE response mediated by STIM1. Collectively, our data show that the 2β insert directly precludes Orai1 channel activation by inducing structural perturbations in the STIM CC region.
基质相互作用分子(STIM)-1 和 -2 在寡聚化和易位到内质网(ER)-质膜(PM)连接处后调节激动剂诱导和基础细胞溶质钙(Ca)水平。在这些连接处,STIM 细胞溶质卷曲螺旋(CC)结构域与 PM Orai1 蛋白偶联并门控这些 Ca 释放激活 Ca(CRAC)通道,这促进了储存操作的 Ca 进入(SOCE)。与作为 SOCE 激活剂的 STIM1 和 STIM2 不同,STIM2β 剪接变体包含位于保守 CC 内的 8 个残基插入,该插入抑制 SOCE。目前尚不清楚 2β 插入是否进一步使弱 STIM2 与 Orai1 的偶联去极化,或者是否独立导致结构扰动,从而阻止 SOCE。在这里,我们使用远紫外圆二色性、光散射、暴露疏水性分析、溶液小角 X 射线散射以及嵌合 STIM1/STIM2β 功能评估,深入了解 2β 插入阻止 SOCE 激活的分子机制。我们发现,在没有全局构象变化的情况下,2β 插入会降低 STIM2 CC 结构域的整体α-螺旋性并增强其暴露的疏水性。值得注意的是,将 2β 插入纳入 STIM1 结构不仅会像观察到的 STIM2 那样影响二级结构和疏水性,而且还会消除 STIM1 介导的更稳健的 SOCE 反应。总的来说,我们的数据表明,2β 插入通过在 STIM CC 区域引起结构扰动,直接阻止 Orai1 通道的激活。