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兰尼碱受体 2 在动脉基础钙信号转导和血管适应性反应中的作用。

Role of Ryanodine Type 2 Receptors in Elementary Ca Signaling in Arteries and Vascular Adaptive Responses.

机构信息

1 Experimental and Clinical Research Center a joint cooperation between the Charité Medical Faculty and the Max Delbrück Center for Molecular Medicine Charité-Universitätsmedizin Berlin Berlin Germany.

2 DZHK (German Centre for Cardiovascular Research), partner site Berlin Berlin Germany.

出版信息

J Am Heart Assoc. 2019 May 7;8(9):e010090. doi: 10.1161/JAHA.118.010090.

Abstract

Background Hypertension is the major risk factor for cardiovascular disease, the most common cause of death worldwide. Resistance arteries are capable of adapting their diameter independently in response to pressure and flow-associated shear stress. Ryanodine receptors (RyRs) are major Ca-release channels in the sarcoplasmic reticulum membrane of myocytes that contribute to the regulation of contractility. Vascular smooth muscle cells exhibit 3 different RyR isoforms (RyR1, RyR2, and RyR3), but the impact of individual RyR isoforms on adaptive vascular responses is largely unknown. Herein, we generated tamoxifen-inducible smooth muscle cell-specific RyR2-deficient mice and tested the hypothesis that vascular smooth muscle cell RyR2s play a specific role in elementary Ca signaling and adaptive vascular responses to vascular pressure and/or flow. Methods and Results Targeted deletion of the Ryr2 gene resulted in a complete loss of sarcoplasmic reticulum-mediated Ca-release events and associated Ca-activated, large-conductance K channel currents in peripheral arteries, leading to increased myogenic tone and systemic blood pressure. In the absence of RyR2, the pulmonary artery pressure response to sustained hypoxia was enhanced, but flow-dependent effects, including blood flow recovery in ischemic hind limbs, were unaffected. Conclusions Our results establish that RyR2-mediated Ca-release events in VSCM s specifically regulate myogenic tone (systemic circulation) and arterial adaptation in response to changes in pressure (hypoxic lung model), but not flow. They further suggest that vascular smooth muscle cell-expressed RyR2 deserves scrutiny as a therapeutic target for the treatment of vascular responses in hypertension and chronic vascular diseases.

摘要

背景

高血压是心血管疾病的主要危险因素,也是全球最常见的死亡原因。阻力血管能够独立地根据压力和与血流相关的切应力来调节其直径。兰尼碱受体(RyRs)是肌浆网膜中的主要钙释放通道,有助于调节收缩性。血管平滑肌细胞表现出 3 种不同的 RyR 同工型(RyR1、RyR2 和 RyR3),但单个 RyR 同工型对适应性血管反应的影响在很大程度上尚不清楚。在此,我们生成了他莫昔芬诱导的平滑肌细胞特异性 RyR2 缺陷小鼠,并检验了血管平滑肌细胞 RyR2s 在基本钙信号转导和对血管压力和/或血流的适应性血管反应中发挥特定作用的假说。

方法和结果

Ryr2 基因的靶向缺失导致周围动脉中肌浆网介导的 Ca 释放事件以及相关的 Ca 激活的大电导 K 通道电流完全丧失,导致肌源性张力增加和全身血压升高。在缺乏 RyR2 的情况下,肺动脉对持续缺氧的反应增强,但与血流相关的效应(包括缺血后肢的血流恢复)不受影响。

结论

我们的结果表明,VSCMs 中 RyR2 介导的 Ca 释放事件特异性地调节肌源性张力(全身循环)和对压力变化的动脉适应(低氧肺模型),但不调节血流。它们进一步表明,血管平滑肌细胞表达的 RyR2 值得作为治疗高血压和慢性血管疾病中血管反应的治疗靶点进行研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ba8/6512102/769f46a979af/JAH3-8-e010090-g001.jpg

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