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A mechanistic description of gating of the human cardiac ryanodine receptor in a regulated minimal environment

机译:在调节的最小环境中对人心脏ryanodine受体进行门控的机制描述

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摘要

Cardiac muscle contraction, triggered by the action potential, is mediated by the release of Ca2+ from the sarcoplasmic reticulum through ryanodine receptor (RyR)2 channels. In situ, RyR2 gating is modulated by numerous physiological and pharmacological agents, and altered RyR2 function underlies the occurrence of arrhythmias in both inherited and acquired diseases. To understand fully the mechanisms underpinning the regulation of RyR2 in the normal heart and how these systems are altered in pathological conditions, we must first gain a detailed knowledge of the fundamental processes of RyR2 gating. In this investigation, we provide key novel mechanistic insights into the physical reality of RyR2 gating revealed by new experimental and analytical approaches. We have examined in detail the single-channel gating kinetics of the purified human RyR2 when activated by cytosolic Ca2+ in a stringently regulated environment where the modulatory influence of factors external to the channel were minimized. The resulting gating schemes are based on an accurate description of single-channel kinetics using hidden Markov model analysis and reveal several novel aspects of RyR2 gating behavior: (a) constitutive gating is observed as unliganded opening events; (b) binding of Ca2+ to the channel stabilizes it in different open states; (c) RyR2 exists in two preopening closed conformations in equilibrium, one of which binds Ca2+ more readily than the other; (d) the gating of RyR2 when bound to Ca2+ can be described by a kinetic scheme incorporating bursts; and (e) analysis of flicker closing events within bursts reveals gating activity that is not influenced by ligand binding. The gating schemes generated in this investigation provide a framework for future studies in which the mechanisms of action of key physiological regulatory factors, disease-linked mutations, and potential therapeutic compounds can be described precisely.
机译:动作电位触发的心肌收缩是由肌浆网中通过ryanodine受体(RyR)2通道释放Ca 2 + 介导的。在原位,RyR2门控由许多生理和药理学因子调节,并且改变的RyR2功能是遗传性和获得性疾病中心律失常发生的基础。为了充分了解正常心脏中RyR2调控的基础机制以及这些系统在病理条件下的变化,我们必须首先详细了解RyR2门控的基本过程。在这项调查中,我们提供了新的实验和分析方法揭示的RyR2门控物理现实的关键新颖的机械见解。我们已经详细研究了在严格调节的环境中,胞质Ca 2 + 激活的纯化人RyR2的单通道门控动力学,在该环境中,通道外部因素的调节影响最小。所得的门控方案基于使用隐马尔可夫模型分析对单通道动力学的准确描述,并揭示了RyR2门控行为的几个新颖方面:(a)本构门控被观察为非配体打开事件; (b)Ca 2 + 与通道的结合将其稳定在不同的打开状态; (c)RyR2在平衡中以两个预开放的闭合构象存在,其中一个比另一个更容易结合Ca 2 + ; (d)RyR2与Ca 2 + 结合时的门控可以通过结合猝发的动力学方案来描述; (e)突发内闪烁关闭事件的分析表明,选通活性不受配体结合的影响。在这项研究中产生的门控方案为将来的研究提供了一个框架,在该框架中可以精确描述关键生理调节因子,与疾病相关的突变和潜在治疗化合物的作用机制。

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