Perni Stefano, Dynes Joseph L, Yeromin Andriy V, Cahalan Michael D, Franzini-Armstrong Clara
Department of Cell and Developmental Biology, University of Pennsylvania, Philadelphia, PA 19104;
Department of Physiology and Biophysics, University of California, Irvine, CA 92697;
Proc Natl Acad Sci U S A. 2015 Oct 6;112(40):E5533-42. doi: 10.1073/pnas.1515606112. Epub 2015 Sep 8.
Stromal interacting molecule (STIM) and Orai proteins constitute the core machinery of store-operated calcium entry. We used transmission and freeze-fracture electron microscopy to visualize STIM1 and Orai1 at endoplasmic reticulum (ER)-plasma membrane (PM) junctions in HEK 293 cells. Compared with control cells, thin sections of STIM1-transfected cells possessed far more ER elements, which took the form of complex stackable cisternae and labyrinthine structures adjoining the PM at junctional couplings (JCs). JC formation required STIM1 expression but not store depletion, induced here by thapsigargin (TG). Extended molecules, indicative of STIM1, decorated the cytoplasmic surface of ER, bridged a 12-nm ER-PM gap, and showed clear rearrangement into small clusters following TG treatment. Freeze-fracture replicas of the PM of Orai1-transfected cells showed extensive domains packed with characteristic "particles"; TG treatment led to aggregation of these particles into sharply delimited "puncta" positioned upon raised membrane subdomains. The size and spacing of Orai1 channels were consistent with the Orai crystal structure, and stoichiometry was unchanged by store depletion, coexpression with STIM1, or an Orai1 mutation (L273D) affecting STIM1 association. Although the arrangement of Orai1 channels in puncta was substantially unstructured, a portion of channels were spaced at ∼15 nm. Monte Carlo analysis supported a nonrandom distribution for a portion of channels spaced at ∼15 nm. These images offer dramatic, direct views of STIM1 aggregation and Orai1 clustering in store-depleted cells and provide evidence for the interaction of a single Orai1 channel with small clusters of STIM1 molecules.
基质相互作用分子(STIM)和Orai蛋白构成了钙库操纵性钙内流的核心机制。我们利用透射电子显微镜和冷冻蚀刻电子显微镜观察了人胚肾293(HEK 293)细胞内质网(ER)-质膜(PM)连接处的STIM1和Orai1。与对照细胞相比,转染STIM1的细胞的超薄切片拥有更多的内质网成分,这些内质网成分呈复杂的可堆叠池状以及在连接耦合(JC)处与质膜相邻的迷宫状结构。JC的形成需要STIM1的表达,但不需要毒胡萝卜素(TG)在此处诱导的钙库耗竭。指示STIM1的延伸分子装饰在内质网的胞质表面,跨越12纳米的内质网-质膜间隙,并且在TG处理后显示出明显重排为小簇。转染Orai1的细胞的质膜冷冻蚀刻复制品显示有大量区域布满特征性的“颗粒”;TG处理导致这些颗粒聚集形成位于凸起膜亚结构域上的界限清晰的“斑点”。Orai1通道的大小和间距与Orai晶体结构一致,并且钙库耗竭、与STIM1共表达或影响STIM1结合的Orai1突变(L273D)均未改变其化学计量。尽管斑点中Orai1通道的排列基本上是无结构的,但一部分通道的间距约为15纳米。蒙特卡洛分析支持了一部分间距约为15纳米的通道的非随机分布。这些图像提供了钙库耗竭细胞中STIM1聚集和Orai1簇集的直观、直接视图,并为单个Orai1通道与小簇STIM1分子相互作用提供了证据。