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Optogenetic stimulation of Gs-signaling in the heart with high spatio-temporal precision

机译:时空精度高的心脏中Gs信号的光遗传刺激

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摘要

The standard technique for investigating adrenergic effects on heart function is perfusion with pharmaceutical agonists, which does not provide high temporal or spatial precision. Herein we demonstrate that the light sensitive Gs-protein coupled receptor JellyOp enables optogenetic stimulation of Gs-signaling in cardiomyocytes and the whole heart. Illumination of transgenic embryonic stem cell-derived cardiomyocytes or of the right atrium of mice expressing JellyOp elevates cAMP levels and instantaneously accelerates spontaneous beating rates similar to pharmacological β-adrenergic stimulation. Light application to the dorsal left atrium instead leads to supraventricular extrabeats, indicating adverse effects of localized Gs-signaling. In isolated ventricular cardiomyocytes from JellyOp mice, we find increased Ca2+ currents, fractional cell shortening and relaxation rates after illumination enabling the analysis of differential Gs-signaling with high temporal precision. Thus, JellyOp expression allows localized and time-restricted Gs stimulation and will provide mechanistic insights into different effects of site-specific, long-lasting and pulsatile Gs activation.
机译:研究肾上腺素对心脏功能的影响的标准技术是用药物激动剂灌注,这不能提供高的时间或空间精度。本文中,我们证明了光敏Gs蛋白偶联受体JellyOp能够在心肌细胞和整个心脏中对Gs信号进行光遗传刺激。转基因胚胎干细胞来源的心肌细胞或表达JellyOp的小鼠右心房的照明可提高cAMP水平,并瞬间加快自发搏动速度,类似于药理学上的β-肾上腺素刺激。轻施加到左心房背面会导致室上性心跳加快,表明局部Gs信号传导的不利影响。在来自JellyOp小鼠的孤立的心室心肌细胞中,我们发现增加的Ca 2 + 电流,照射后部分细胞的缩短和松弛率提高,从而能够以高的时间精度分析差分Gs信号。因此,JellyOp的表达允许局部和时间限制的Gs刺激,并且将提供有关位点特异性,持久性和搏动性Gs激活的不同作用的机理见解。

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