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Excitation-Contraction Coupling Gain and Cooperativity of the Cardiac Ryanodine Receptor: A Modeling Approach

机译:兴奋性-收缩耦合增益和心脏Ryanodine受体的协同性:一种建模方法。

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摘要

During calcium-induced calcium-release, the ryanodine receptor (RyR) opens and releases large amounts of calcium from the sarcoplasmic reticulum into the cytoplasm of the myocyte. Recent experiments have suggested that cooperativity between the four monomers comprising the RyR plays an important role in the dynamics of the overall receptor. Furthermore, this cooperativity can be affected by the binding of FK506 binding protein, and hence, modulated by adrenergic stimulation through the phosphorylating action of protein kinase A. This has important implications for heart failure, where it has been hypothesized that RyR hyperphosphorylation, resulting in a loss of cooperativity, can lead to a persistent leak and a reduced sarcoplasmic-reticula content. In this study, we construct a theoretical model that examines the cooperativity via the assumption of an allosteric interaction between the four subunits. We find that the level of cooperativity, regulated by the binding of FK506 binding-protein, can have a dramatic effect on the excitation-contraction coupling gain and that this gain exhibits a clear maximum. These findings are compared to currently available data from different species and allows for an evaluation of the aforementioned heart-failure scenario.
机译:在钙诱导的钙释放过程中,ryanodine受体(RyR)打开并将大量钙从肌质网释放到肌细胞的细胞质中。最近的实验表明,构成RyR的四种单体之间的协同作用在整个受体的动力学中起着重要作用。此外,这种协同性可能会受到FK506结合蛋白的结合的影响,并因此通过蛋白激酶A的磷酸化作用受到肾上腺素能刺激的调节。这对心力衰竭具有重要意义,据推测,RyR过度磷酸化可导致协作能力的丧失会导致持续的泄漏和肌浆网含量的降低。在这项研究中,我们构建了一个理论模型,该理论模型通过假设四个亚基之间的变构相互作用来检验合作性。我们发现,由FK506结合蛋白的结合调节的协同作用水平可以对激发-收缩偶联增益产生显着影响,并且该增益表现出明显的最大值。将这些发现与来自不同物种的当前可用数据进行比较,并可以评估上述心衰情况。

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