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衰老改变心脏起搏细胞中L型钙通道与β2-肾上腺素能受体之间信号微区的形成和功能。

Aging Alters the Formation and Functionality of Signaling Microdomains Between L-type Calcium Channels and β2-Adrenergic Receptors in Cardiac Pacemaker Cells.

作者信息

Choi Sabrina, Vivas Oscar, Baudot Matthias, Moreno Claudia M

机构信息

Department of Physiology and Biophysics, University of Washington, Seattle, WA, United States.

出版信息

Front Physiol. 2022 Apr 20;13:805909. doi: 10.3389/fphys.2022.805909. eCollection 2022.

Abstract

Heart rate is accelerated to match physiological demands through the action of noradrenaline on the cardiac pacemaker. Noradrenaline is released from sympathetic terminals and activates β1-and β2-adrenergic receptors (ΑRs) located at the plasma membrane of pacemaker cells. L-type calcium channels are one of the main downstream targets potentiated by the activation of β-ARs. For this signaling to occur, L-type calcium channels need to be located in close proximity to β-ARs inside caveolae. Although it is known that aging causes a slowdown of the pacemaker rate and a reduction in the response of pacemaker cells to noradrenaline, there is a lack of in-depth mechanistic insights into these age-associated changes. Here, we show that aging affects the formation and function of adrenergic signaling microdomains inside caveolae. By evaluating the β1 and β2 components of the adrenergic regulation of the L-type calcium current, we show that aging does not alter the regulation mediated by β1-ARs but drastically impairs that mediated by β2-ARs. We studied the integrity of the signaling microdomains formed between L-type calcium channels and β-ARs by combining high-resolution microscopy and proximity ligation assays. We show that consistent with the electrophysiological data, aging decreases the physical association between β2-ARs and L-type calcium channels. Interestingly, this reduction is associated with a decrease in the association of L-type calcium channels with the scaffolding protein AKAP150. Old pacemaker cells also have a reduction in caveolae density and in the association of L-type calcium channels with caveolin-3. Together the age-dependent alterations in caveolar formation and the nano-organization of β2-ARs and L-type calcium channels result in a reduced sensitivity of the channels to β2 adrenergic modulation. Our results highlight the importance of these signaling microdomains in maintaining the chronotropic modulation of the heart and also pinpoint the direct impact that aging has on their function.

摘要

通过去甲肾上腺素作用于心脏起搏器,心率加快以匹配生理需求。去甲肾上腺素从交感神经末梢释放,激活位于起搏细胞质膜上的β1和β2肾上腺素能受体(ARs)。L型钙通道是β-ARs激活后增强的主要下游靶点之一。为使该信号传导发生,L型钙通道需要位于小窝内靠近β-ARs的位置。尽管已知衰老会导致起搏速率减慢以及起搏细胞对去甲肾上腺素的反应降低,但对于这些与年龄相关的变化缺乏深入的机制性见解。在此,我们表明衰老会影响小窝内肾上腺素能信号微区的形成和功能。通过评估L型钙电流的肾上腺素能调节的β1和β2成分,我们发现衰老不会改变由β1-ARs介导的调节,但会严重损害由β2-ARs介导的调节。我们通过结合高分辨率显微镜和邻近连接分析研究了L型钙通道和β-ARs之间形成的信号微区的完整性。我们表明,与电生理数据一致,衰老会减少β2-ARs与L型钙通道之间的物理关联。有趣的是,这种减少与L型钙通道与支架蛋白AKAP150的关联减少有关。老年起搏细胞的小窝密度以及L型钙通道与小窝蛋白-3的关联也会降低。小窝形成以及β2-ARs和L型钙通道的纳米组织中与年龄相关的改变共同导致通道对β2肾上腺素能调节的敏感性降低。我们的结果突出了这些信号微区在维持心脏变时性调节中的重要性,也指出了衰老对其功能的直接影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3716/9065441/718a821bac43/fphys-13-805909-g001.jpg

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