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首页> 外文期刊>Advances in Experimental Medicine and Biology >The STIM-Orai Pathway: Light-Operated Ca2+ Entry Through Engineered CRAC Channels
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The STIM-Orai Pathway: Light-Operated Ca2+ Entry Through Engineered CRAC Channels

机译:Stim-Orai途径:通过工程CRAC通道进行光操作的CA2 +进入

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Ca2+ signals regulate a plethora of cellular functions that include muscle contraction, heart beating, hormone secretion, lymphocyte activation, gene expression, and metabolism. To study the impact of Ca2+ signals on biological processes, pharmacological tools and caged compounds have been commonly applied to induce fluctuations of intracellular Ca2+ concentrations. These conventional approaches, nonetheless, lack rapid reversibility and high spatiotemporal resolution. To overcome these disadvantages, we and others have devised a series of photoactivatable genetically encoded Ca2+ actuators (GECAs) by installing light sensitivities into a bona fide highly selective Ca2+ channel, the Ca2+ release-activated Ca2+ (CRAC) channel. Store-operated CRAC channel serves as a major route for Ca2+ entry in many cell types. These GECAs enable remote and precise manipulation of Ca2+ signaling in both excitable and non-excitable cells. When combined with nanotechnology, it becomes feasible to wirelessly photo-modulate Ca2+-dependent activities in vivo. In this chapter, we briefly review most recent advances in engineering CRAC channels to achieve optical control over Ca2+ signaling, outline their design principles and kinetic features, and present exemplary applications of GECAs engineered from CRAC channels.
机译:CA2 +信号调节包含肌肉收缩,心脏跳动,激素分泌,淋巴细胞活化,基因表达和代谢的血管函数。为了研究CA2 +信号对生物过程的影响,通常普遍应用药理学工具和笼养化合物以诱导细胞内Ca2 +浓度的波动。尽管如此,这些常规方法缺乏快速的可逆性和高时的时尚分辨率。为了克服这些缺点,我们和其他人通过将光敏性安装到真正选择性CA2 +通道,CA2 +释放CA2 +(CRAC)通道中,我们和其他人设计了一系列可光激活的遗传编码CA2 +致动器(GECAS)。商店操作的CRAC通道用作许多细胞类型中CA2 +条目的主要路线。这些GECAS在可激发和非易激发的单元格中启用了对CA2 +信令的远程和精确操作。当与纳米技术结合时,可以在体内无线照片调制CA2 +依赖活动变得可行。在本章中,我们简要介绍了工程CRAC通道中最近的最新进步,实现了通过CA2 +信号传导的光学控制,概述了他们的设计原则和动力学特征,并提出了GECA从CRAC通道设计的示例性应用。

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