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Recruiting RyRs to Open in a Ca2+ Release Unit: Single-RyR Gating Properties Make RyR Group Dynamics

机译:在CA2 +发布单位招聘RYRS开放:单RYR门控属性使RYR组动态

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摘要

In cardiac myocytes, clusters of type-2 ryanodine receptors (RyR2s) release Ca2+ from the sarcoplasmic reticulum (SR) via a positive feedback mechanism in which fluxed Ca2+ activates nearby RyRs. Although the general principles of this are understood, less is known about how single-RyR gating properties define the RyR group dynamics in an array of many channels. Here, we examine this using simulations with three models of RyR gating that have identical open probabilities: the commonly used two-state Markov gating model, one that utilizes multiple exponentials to fit single-channel open time (OT) and closed time (CT) distributions, and an extension of this multiexponential model that also includes experimentally measured correlations between single-channel OTs and CTs. The simulations of RyR clusters that utilize the multiexponential gating model produce infrequent Ca2+ release events with relatively few open RyRs. Ca2+ release events become even smaller when OT/CT correlations are included. This occurs because the correlations produce a small but consistent bias against recruiting more RyRs to open during the middle of a Ca2+ release event, between the initiation and termination phases (which are unaltered compared to the uncorrelated simulations). In comparison, the two-state model produces frequent, large, and long Ca2+ release events because it had a recruitment bias in favor of opening more RyRs. This difference stems from the two-state model’s single-RyR OT and CT distributions being qualitatively different from the experimental ones. Thus, the details of single-RyR gating can profoundly affect SR Ca2+ release even if open probability and mean OTs and CTs are identical. We also show that Ca2+ release events can terminate spontaneously without any reduction in SR [Ca2+], luminal regulation, Ca2+-dependent inactivation, or physical coupling between RyRs when Ca2+ flux is below a threshold value. This supports and extends the pernicious attrition/induction decay hypothesis that SR Ca2+ release events terminate below a threshold Ca2+ flux.
机译:在心肌细胞,2型兰尼碱受体(RyR2s)的簇从经由在其中回流的Ca 2+激活附近RyRs的一个正反馈机制的肌质网(SR)释放的Ca 2+。虽然此的一般原理被理解,较少有人知道的单门控RyR的属性如何在许多通道的阵列定义RyR的群体动力学。在这里,我们检查此使用模拟与RyR的门控的三种模式具有相同的开概率:在常用的两种状态Markov选通模式,一个利用多个指数函数拟合单通道开放时间(OT)和关闭时间(CT)分布,并且该多指数模型,还包括单信道和在职培训CT间实验测量的相关性的延伸。碱受体集群的利用相对较少的RyRs的开放的多指数模型浇注生产罕见Ca2 +释放事件的模拟。 Ca2 +释放事件成为当包括OT / CT的相关性更小。这是因为相关性产生针对招募更多RyRs的一个Ca2 +释放事件的中间期间打开,开始和结束阶段(其是未改变相比于不相关的模拟)之间有小的但一致的偏差。相比之下,两态模型产生频繁的,大,长Ca2 +释放事件,因为它有利于更加开放的RyRs的有招聘偏见。这种差异从两态模型的单RyR的OT和CT分布不同于实验值质的不同造成的。因此,单碱受体门的细节可以深刻影响SR Ca2 +释放,即使开放概率和平均在职培训计划和CTS相同的。我们还表明,Ca2 +释放事件可以自发地终止,而无需在SR的[Ca2 +] ryanodine受体之间的任何减少,鲁米调节,钙依赖的失活,或物理连接时的Ca 2+通量低于阈值。这支持并延伸的有害磨损/感应衰减的假设,即SR的Ca 2+释放事件终止低于阈值的Ca 2+通量。

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