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Gα蛋白信号的光遗传学抑制降低钙振荡的随机性。

Optogenetic Inhibition of Gα Protein Signaling Reduces Calcium Oscillation Stochasticity.

作者信息

Hannanta-Anan Pimkhuan, Chow Brian Y

机构信息

Department of Bioengineering , University of Pennsylvania , Philadelphia , Pennsylvania 19104 , United States.

出版信息

ACS Synth Biol. 2018 Jun 15;7(6):1488-1495. doi: 10.1021/acssynbio.8b00065. Epub 2018 Jun 4.

Abstract

As fast terminators of G-protein coupled receptor (GPCR) signaling, regulators of G-protein signaling (RGS) serve critical roles in fine-tuning second messenger levels and, consequently, cellular responses to external stimuli. Here, we report the creation of an optogenetic RGS2 (opto-RGS2) that suppresses agonist-evoked calcium oscillations by the inactivation of Gα protein. In this system, cryptochrome-mediated heterodimerization of the catalytic RGS2-box with its N-terminal amphipathic helix reconstitutes a functional membrane-localized complex that can dynamically suppress store-operated release of calcium. Engineered opto-RGS2 cell lines were used to establish the role of RGS2 as a key inhibitory feedback regulator of the stochasticity of the Gα-mediated calcium spike timing. RGS2 reduced the stochasticity of carbachol-stimulated calcium oscillations, and the feedback inhibition was coupled to the global calcium elevation by calmodulin/RGS2 interactions. The identification of a critical negative feedback circuit exemplifies the utility of optogenetic approaches for interrogating RGS/GPCR biology and calcium encoding principles through temporally precise molecular gain-of-function.

摘要

作为G蛋白偶联受体(GPCR)信号的快速终止子,G蛋白信号调节因子(RGS)在微调第二信使水平以及细胞对外部刺激的反应中发挥着关键作用。在此,我们报告了一种光遗传学RGS2(opto - RGS2)的构建,它通过使Gα蛋白失活来抑制激动剂诱发的钙振荡。在这个系统中,隐花色素介导的催化性RGS2结构域与其N端两亲性螺旋的异源二聚化重构了一个功能性膜定位复合物,该复合物能够动态抑制钙的储存 - 操作性释放。利用工程化的opto - RGS2细胞系确定了RGS2作为Gα介导的钙峰时间随机性的关键抑制性反馈调节因子的作用。RGS2降低了卡巴胆碱刺激的钙振荡的随机性,并且这种反馈抑制通过钙调蛋白/RGS2相互作用与全局钙升高相关联。关键负反馈回路的鉴定例证了光遗传学方法在通过时间精确的分子功能获得来研究RGS/GPCR生物学和钙编码原理方面的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/887a/6311707/d2a832712446/nihms-996668-f0001.jpg

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