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首页> 外文期刊>Advances in Experimental Medicine and Biology >The Role of Mitochondria in the Activation/Maintenance of SOCE: The Contribution of Mitochondrial Ca2+ Uptake, Mitochondrial Motility, and Location to Store-Operated Ca2+ Entry
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The Role of Mitochondria in the Activation/Maintenance of SOCE: The Contribution of Mitochondrial Ca2+ Uptake, Mitochondrial Motility, and Location to Store-Operated Ca2+ Entry

机译:线粒体在菌类激活/维持中的作用:线粒体Ca2 +摄取,线粒体运动的贡献,线粒体运动,以及存储操作的CA2 +进入

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In most cell types, the depletion of internal Ca2+ stores triggers the activation of Ca2+ entry. This crucial phenomenon is known since the 1980s and referred to as store-operated Ca2+ entry (SOCE). With the discoveries of the stromal-interacting molecules (STIMs) and the Ca2+-permeable Orai channels as the long-awaited molecular constituents of SOCE, the role of mitochondria in controlling the activity of this particular Ca2+ entry pathway is kind of buried in oblivion. However, the capability of mitochondria to locally sequester Ca2+ at sites of Ca2+ release and entry was initially supposed to rule SOCE by facilitating the Ca2+ depletion of the endoplasmic reticulum and removing entering Ca2+ from the Ca2+-inhibitable channels, respectively. Moreover, the central role of these organelles in controlling the cellular energy metabolism has been linked to the activity of SOCE. Nevertheless, the exact molecular mechanisms by which mitochondria actually determine SOCE are still pretty obscure. In this essay we describe the complexity of the mitochondrial Ca2+ uptake machinery and its regulation, molecular components, and properties, which open new ways for scrutinizing the contribution of mitochondria to SOCE. Moreover, data concerning the variability of the morphology and cellular distribution of mitochondria as putative determinants of SOCE activation, maintenance, and termination are summarized.
机译:在大多数细胞类型中,内部CA2 +商店的耗尽触发了CA2 +条目的激活。自20世纪80年代以来,这种至关重要的现象是已知的,并称为储存的CA2 +条目(SOCE)。随着基质相互作用分子的发现和Ca2 + -Permable Orai渠道作为菌队的长期分子成分,线粒体在控制该特定Ca2 +进入途径的活性方面的作用是湮灭的。然而,Mitochondria在Ca2 +释放和进入位点的局部螯合Ca2 +的能力最初应该通过促进内质网的Ca2 +耗尽分别从Ca2 + -Inciellib的进入Ca2 +的Ca2 +耗尽来统治SOCE。此外,这些细胞器在控制细胞能量代谢方面的核心作用已与菌盘的活性有关。然而,线粒体实际决定脱离的确切分子机制仍然非常模糊。在本文中,我们描述了线粒体Ca2 +摄取机械和调节,分子组分和性质的复杂性,这开辟了仔细审查线粒体贡献的新方法。此外,总结了作为线粒体的形态和细胞分布的变异性作为索根激活,维护和终止的推定决定因素的变异性的数据。

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