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Distinct Orai-coupling domains in STIM1 and STIM2 define the Orai-activating site

机译:STIM1和STIM2中不同的Orai偶联域定义了Orai激活位点

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摘要

STIM1 and STIM2 are widely expressed endoplasmic reticulum (ER) Ca2+ sensor proteins able to translocate within the ER membrane to physically couple with and gate plasma membrane Orai Ca2+ channels. Although they are structurally similar, we reveal critical differences in the function of the short STIM-Orai-activating regions (SOAR) of STIM1 and STIM2. We narrow these differences in Orai1 gating to a strategically exposed phenylalanine residue (Phe-394) in SOAR1, which in SOAR2 is substituted by a leucine residue. Remarkably, in full-length STIM1, replacement of Phe-394 with the dimensionally similar but polar histidine head group prevents both Orai1 binding and gating, creating an Orai1 non-agonist. Thus, this residue is critical in tuning the efficacy of Orai activation. While STIM1 is a full Orai1-agonist, leucine-replacement of this crucial residue in STIM2 endows it with partial agonist properties, which may be critical for limiting Orai1 activation stemming from its enhanced sensitivity to store-depletion.
机译:STIM1和STIM2是广泛表达的内质网(ER)Ca2 +传感器蛋白,能够在ER膜内移位,与Orai Ca2 +通道物理耦合并形成门控。尽管它们在结构上相似,但我们揭示了STIM1和STIM2的短STIM-Orai激活区(SOAR)的功能存在重大差异。我们将Orai1门控中的这些差异缩小为SOAR1中策略性暴露的苯丙氨酸残基(Phe-394),该残基在SOAR2中被亮氨酸残基取代。值得注意的是,在全长STIM1中,用尺寸相似但极性的组氨酸头部基团替换Phe-394会阻止Orai1结合和门控,从而产生Orai1非激动剂。因此,该残基对于调节Orai活化的功效至关重要。尽管STIM1是完整的Orai1激动剂,但STIM2中此关键残基的亮氨酸置换使其具有部分激动剂特性,这对限制Orai1激活至关重要,因为它对存储耗尽的敏感性增强。

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