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Mechanism of calsequestrin regulation of single cardiac ryanodine receptor in normal and pathological conditions

机译:钙螯合蛋白在正常和病理条件下调节单一心脏瑞丹碱受体的机制

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摘要

Release of Ca2+ from the sarcoplasmic reticulum (SR) drives contractile function of cardiac myocytes. Luminal Ca2+ regulation of SR Ca2+ release is fundamental not only in physiology but also in physiopathology because abnormal luminal Ca2+ regulation is known to lead to arrhythmias, catecholaminergic polymorphic ventricular tachycardia (CPVT), and/or sudden cardiac arrest, as inferred from animal model studies. Luminal Ca2+ regulates ryanodine receptor (RyR)2-mediated SR Ca2+ release through mechanisms localized inside the SR; one of these involves luminal Ca2+ interacting with calsequestrin (CASQ), triadin, and/or junctin to regulate RyR2 function.CASQ2-RyR2 regulation was examined at the single RyR2 channel level. Single RyR2s were incorporated into planar lipid bilayers by the fusion of native SR vesicles isolated from either wild-type (WT), CASQ2 knockout (KO), or R33Q-CASQ2 knock-in (KI) mice. KO and KI mice have CPVT-like phenotypes. We show that CASQ2(WT) action on RyR2 function (either activation or inhibition) was strongly influenced by the presence of cytosolic MgATP. Function of the reconstituted CASQ2(WT)–RyR2 complex was unaffected by changes in luminal free [Ca2+] (from 0.1 to 1 mM). The inhibition exerted by CASQ2(WT) association with the RyR2 determined a reduction in cytosolic Ca2+ activation sensitivity. RyR2s from KO mice were significantly more sensitive to cytosolic Ca2+ activation and had significantly longer mean open times than RyR2s from WT mice. Sensitivity of RyR2s from KI mice was in between that of RyR2 channels from KO and WT mice. Enhanced cytosolic RyR2 Ca2+ sensitivity and longer RyR2 open times likely explain the CPVT-like phenotype of both KO and KI mice.
机译:Ca 2 + 从肌浆网(SR)释放会驱动心肌细胞的收缩功能。 SR Ca 2 + 释放的发光Ca 2 + 调控不仅在生理学方面而且在生理病理学中都是基本的,因为异常的管腔Ca 2 + 调控是根据动物模型研究推断,已知会导致心律不齐,儿茶酚胺能性多形性室性心动过速(CPVT)和/或心脏骤停。发光的Ca 2 + 通过SR内部的机制调节RyR)2介导的ryanodine受体Ca 2 + 释放。其中之一涉及腔Ca 2 + 与calsequestrin(CASQ),triadin和/或junctin相互作用以调节RyR2功能。在单个RyR2通道水平研究了CASQ2-RyR2调节。通过融合从野生型(WT),CASQ2基因敲除(KO)或R33Q-CASQ2基因敲除(KI)小鼠中分离的天然SR囊泡,将单个RyR2掺入平面脂质双层中。 KO和KI小鼠具有CPVT样表型。我们表明,CASQ2(WT)对RyR2功能(激活或抑制)的作用受到细胞质MgATP的强烈影响。重组的CASQ2(WT)–RyR2复合物的功能不受腔内游离[Ca 2 + ](0.1至1 mM)变化的影响。 CASQ2(WT)对RyR2的抑制作用决定了胞质Ca 2 + 的激活敏感性降低。与野生型小鼠相比,来自KO小鼠的RyR2对胞质Ca 2 + 的活化更为敏感,并且平均开放时间更长。 KI小鼠的RyR2s敏感性介于KO和WT小鼠的RyR2通道之间。胞浆RyR2 Ca 2 + 敏感性增强和RyR2开放时间延长可能解释了KO和KI小鼠的CPVT样表型。

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