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Store-dependent and -independent Modes Regulating Ca2+ Release-activated Ca2+ Channel Activity of Human Orai1 and Orai3

机译:依赖存储和独立的模式调节Ca2 + 人Orai1和 Orai3

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摘要

We evaluated currents induced by expression of human homologs of Orai together with STIM1 in human embryonic kidney cells. When co-expressed with STIM1, Orai1 induced a large inwardly rectifying Ca2+-selective current with Ca2+-induced slow inactivation. A point mutation of Orai1 (E106D) altered the ion selectivity of the induced Ca2+ release-activated Ca2+ (CRAC)-like current while retaining an inwardly rectifying I-V characteristic. Expression of the C-terminal portion of STIM1 with Orai1 was sufficient to generate CRAC current without store depletion. 2-APB activated a large relatively nonselective current in STIM1 and Orai3 co-expressing cells. 2-APB also induced Ca2+ influx in Orai3-expressing cells without store depletion or co-expression of STIM1. The Orai3 current induced by 2-APB exhibited outward rectification and an inward component representing a mixed calcium and monovalent current. A pore mutant of Orai3 inhibited store-operated Ca2+ entry and did not carry significant current in response to either store depletion or addition of 2-APB. Analysis of a series of Orai1-3 chimeras revealed the structural determinant responsible for 2-APB-induced current within the sequence from the second to third transmembrane segment of Orai3. The Orai3 current induced by 2-APB may reflect a store-independent mode of CRAC channel activation that opens a relatively nonselective cation pore.
机译:我们评估了人类胚胎肾细胞中由Orai的人类同源物与STIM1一起表达诱导的电流。当与STIM1共表达时,Orai1诱导大的内向整流Ca 2 + 选择性电流,而Ca 2 + 诱导缓慢失活。 Orai1(E106D)的点突变改变了诱导的Ca 2 + 释放激活的Ca 2 + (CRAC)样电流的离子选择性,同时保留了向内整流的IV特性。用Orai1表达STIM1的C端部分足以产生CRAC电流而无存储耗尽。 2-APB在STIM1和Orai3共表达细胞中激活了较大的相对非选择性电流。 2-APB还诱导表达Orai3的细胞发生Ca 2 + 大量涌入,而没有STIM1的存储损耗或共表达。 2-APB诱导的Orai3电流表现出向外的整流作用,而向内的成分则代表混合的钙和一价电流。 Orai3的一个孔突变体抑制了存储操作的Ca 2 + 的进入,并且在存储耗尽或添加2-APB时没有携带明显的电流。对一系列Orai1-3嵌合体的分析显示,结构决定簇负责2-APB诱导的电流。 Orai3的第二至第三跨膜片段。感应产生的Orai3电流 2-APB可能反映了CRAC通道激活的与存储无关的模式 打开一个相对非选择性的阳离子孔。

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