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一个致病变异的人类 Orai1 突变使 Orai1 通道的 STIM1 非依赖性快速失活显现出来。

A pathogenic human Orai1 mutation unmasks STIM1-independent rapid inactivation of Orai1 channels.

机构信息

Department of Pharmacology, Northwestern University, Chicago, United States.

出版信息

Elife. 2023 Feb 20;12:e82281. doi: 10.7554/eLife.82281.

Abstract

Ca release-activated Ca (CRAC) channels are activated by direct physical interactions between Orai1, the channel protein, and STIM1, the endoplasmic reticulum Ca sensor. A hallmark of CRAC channels is fast Ca-dependent inactivation (CDI) which provides negative feedback to limit Ca entry through CRAC channels. Although STIM1 is thought to be essential for CDI, its molecular mechanism remains largely unknown. Here, we examined a poorly understood gain-of-function (GOF) human Orai1 disease mutation, L138F, that causes tubular aggregate myopathy. Through pairwise mutational analysis, we determine that large amino acid substitutions at either L138 or the neighboring T92 locus located on the pore helix evoke highly Ca-selective currents in the absence of STIM1. We find that the GOF phenotype of the L138 pathogenic mutation arises due to steric clash between L138 and T92. Surprisingly, strongly activating L138 and T92 mutations showed CDI in the absence of STIM1, contradicting prevailing views that STIM1 is required for CDI. CDI of constitutively open T92W and L138F mutants showed enhanced intracellular Ca sensitivity, which was normalized by re-adding STIM1 to the cells. Truncation of the Orai1 C-terminus reduced T92W CDI, indicating a key role for the Orai1 C-terminus for CDI. Overall, these results identify the molecular basis of a disease phenotype with broad implications for activation and inactivation of Orai1 channels.

摘要

钙释放激活钙(CRAC)通道通过通道蛋白 Orai1 和内质网钙传感器 STIM1 之间的直接物理相互作用而被激活。CRAC 通道的一个显著特征是快速的 Ca 依赖性失活(CDI),它提供负反馈以限制通过 CRAC 通道的 Ca 内流。尽管 STIM1 被认为对 CDI 是必不可少的,但它的分子机制在很大程度上仍是未知的。在这里,我们研究了一种理解甚少的功能获得性(GOF)人类 Orai1 疾病突变,L138F,其导致管状聚集性肌病。通过成对突变分析,我们确定在没有 STIM1 的情况下,位于孔螺旋上的 L138 或相邻的 T92 位置处的大氨基酸取代会引发高度 Ca 选择性电流。我们发现,致病突变 L138 的 GOF 表型是由于 L138 和 T92 之间的空间冲突引起的。令人惊讶的是,强烈激活的 L138 和 T92 突变在没有 STIM1 的情况下显示出 CDI,这与 STIM1 是 CDI 所必需的观点相矛盾。在没有 STIM1 的情况下,组成型开放的 T92W 和 L138F 突变体的 CDI 显示出增强的细胞内 Ca 敏感性,通过将 STIM1 重新添加到细胞中可使这种敏感性正常化。Orai1 C 端截断减少了 T92W 的 CDI,表明 Orai1 C 端在 CDI 中起着关键作用。总的来说,这些结果确定了疾病表型的分子基础,对 Orai1 通道的激活和失活具有广泛的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f789/9991058/89ab1c08e5a9/elife-82281-fig1.jpg

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