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Orai3 - the 'exceptional' Orai?

机译:Orai3-“特殊”的Orai?

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Abstract The field of agonist-activated Ca 2+ entry in non-excitable cells underwent a revolution some 5 years ago with the discovery of the Orai proteins as the essential pore-forming components of the low-conductance, highly Ca 2+-selective CRAC channels whose activation is dependent on depletion of intracellular stores. Mammals possess three distinct Orai proteins (Orai1, 2 and 3) of which Orai3 is unique to this class, apparently evolving from Orai1. However, the sequence of Orai3 shows marked differences from that of Orai1, particularly in those regions of the protein outside of the essential pore-forming domains. Correspondingly, studies from several different groups have indicated that the inclusion of Orai3 is associated with the appearance of conductances that display unique features in their gating, selectivity, regulation and mode of activation. In this Topical Review, these features are discussed with the purpose of proposing that the evolutionary appearance of Orai3 in mammals, and the consequent development of conductances displaying novel properties - whether formed by Orai3 alone or in conjunction with the other Orai proteins - is associated with the specific role of this member of the Orai family in a unique range of distinct cellular activities.
机译:摘要约5年前,随着Orai蛋白被发现为低电导,高Ca 2+选择性CRAC的基本成孔成分,激动剂激活的Ca 2+进入领域经历了一场革命。通道的激活取决于细胞内存储的消耗。哺乳动物拥有三种不同的Orai蛋白(Orai1、2和3),其中Orai3是这一类的独特蛋白,显然是从Orai1进化而来的。但是,Orai3的序列显示出与Orai1的显着差异,特别是在必需孔形成域之外的蛋白质区域。相应地,来自几个不同组的研究表明,Orai3的包含与电导的出现有关,这些电导在其选通,选择性,调节和激活模式方面显示出独特的功能。在本专题综述中,对这些功能进行了讨论,目的是提出Orai3在哺乳动物中的进化外观以及随之而来的显示出新特性的电导的发展-无论是由Orai3单独形成还是与其他Orai蛋白一起形成-与Orai家族这个成员在独特的独特细胞活动范围中的特定作用。

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