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Permeation selectivity and gating in store-operated CRAC channels

机译:在商店操作的CRAC通道中的渗透选择性和门控

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摘要

Store-operated Ca2+ release-activated Ca2+ (CRAC) channels are a widespread mechanism for generating cellular Ca2+ signals and regulate many Ca2+-dependent functions, including transcription, motility and proliferation. The opening of CRAC channels in response to depletion of intracellular Ca2+ stores involves a cascade of cellular events that culminate in direct interactions between STIM1, the endoplasmic reticulum Ca2+ sensor, and the channels composed of Orai proteins. Evidence gathered over the last two decades indicates that CRAC channels display a unique functional pore fingerprint characterized by exquisite Ca2+ selectivity, low unitary conductance, and low permeability to large cations. Here, we review the key pore properties of CRAC channels and discuss recent progress in addressing the molecular foundations of these properties. Structure–function and cysteine-scanning studies have revealed the identity and organization of pore-lining residues, including those that form the selectivity filter, providing a structural framework for understanding CRAC channel pore properties. Recent studies in pore mutants that produce STIM1-independent constitutive channel activation indicate that exquisite Ca2+ selectivity in CRAC channels is not hardwired into Orai proteins, but is instead manifested only following the binding of STIM1 to the intrinsically poorly Ca2+-selective Orai channels. These findings reveal new functional aspects of CRAC channels and suggest that the selectivity filter of the CRAC channel is a dynamic structure whose conformation and functional properties are powerfully regulated by the channel activation stimulus.
机译:存储操作的Ca 2 + 释放激活的Ca 2 + (CRAC)通道是一种广泛的机制,可产生细胞Ca 2 + 信号并调节Ca 2 + 依赖的许多功能,包括转录,运动和增殖。响应于细胞内Ca 2 + 枯竭的CRAC通道的开放涉及一系列细胞事件,最终导致STIM1,内质网Ca 2 + 传感器之间的直接相互作用达到顶峰。 ,以及由Orai蛋白组成的通道。最近二十年来的证据表明,CRAC通道显示出独特的功能性孔指纹,其特征在于精巧的Ca 2 + 选择性,低单位电导率和对大阳离子的低渗透性。在这里,我们回顾了CRAC通道的关键孔特性,并讨论了解决这些特性的分子基础方面的最新进展。结构功能和半胱氨酸扫描研究揭示了孔衬残留物的身份和组织,包括形成选择性过滤器的残留物,为理解CRAC通道孔的性质提供了结构框架。对产生不依赖STIM1的本构通道激活的孔突变体的最新研究表明,CRAC通道中的精美Ca 2 + 选择性并非硬连接到Orai蛋白中,而是仅在STIM1与内在结合后才表现出来。 Ca 2 + 选择性Orai通道的性能较差。这些发现揭示了CRAC通道的新功能方面,并表明CRAC通道的选择性过滤器是一种动态结构,其构型和功能特性受到通道激活刺激的有力调节。

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