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Mechanisms of Calcium Leak from Cardiac Sarcoplasmic Reticulum Revealed by Statistical Mechanics

机译:统计力学揭示心肌肌肉网的钙泄漏机制

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摘要

Heart muscle contraction is normally activated by a synchronized Ca release from sarcoplasmic reticulum (SR), a major intracellular Ca store. However, under abnormal conditions, Ca leaks from the SR, decreasing heart contraction amplitude and increasing risk of life-threatening arrhythmia. The mechanisms and regimes of SR operation generating the abnormal Ca leak remain unclear. Here, we employed both numerical and analytical modeling to get mechanistic insights into the emergent Ca leak phenomenon. Our numerical simulations using a detailed realistic model of the Ca release unit reveal sharp transitions resulting in Ca leak. The emergence of leak is closely mapped mathematically to the Ising model from statistical mechanics. The system steady-state behavior is determined by two aggregate parameters: the analogs of magnetic field (h) and the inverse temperature (beta) in the Ising model, for which we have explicit formulas in terms of SR [Ca] and release channel opening and closing rates. The classification of leak regimes takes the shape of a phase beta-h diagram, with the regime boundaries occurring at h = 0 and a critical value of beta (beta*) that we estimate using a classical Ising model and mean field theory. Our theory predicts that a synchronized Ca leak will occur when h > 0 and beta > beta*, and a disordered leak occurs when beta < beta*and his not too negative. The disorder leak is distinguished from synchronized leak (in long-lasting sparks) by larger Peierls contour lengths, an output parameter reflecting degree of disorder. Thus, in addition to our detailed numerical model approach, we also offer an instantaneous computational tool using analytical formulas of the Ising model for respective ryanodine receptor parameters and SR Ca load that describe and classify phase transitions and leak emergence.
机译:心肌收缩通常通过来自肌肉网(SR)的同步CA释放,是一个主要的细胞内CA储存。然而,在异常条件下,CA从SR泄漏,降低心脏收缩振幅和危及生命的心律失常的风险。生成异常CA泄漏的SR操作的机制和制度仍然不清楚。在这里,我们使用数值和分析模型来获得机械洞察力泄漏现象。我们使用CA释放单元的详细逼真模型的数值模拟显示了导致CA泄漏的急剧转换。泄漏的出现在数学上密切映射到统计力学的课程模型。系统稳态行为由两个聚合参数确定:磁场(H)的类似物和诸如ISING模型中的逆温度(beta),我们在SR [CA]和释放通道开口方面具有显式公式和关闭费率。泄漏制度的分类采用相位β-H图的形状,具有在H = 0处发生的调节边界和我们使用经典ising模型和平均场理论估计的β(beta *)的临界值。我们的理论预测,当H> 0和β>β*时会发生同步的Ca泄漏,并且在β

著录项

  • 来源
    《Biophysical Journal》 |2019年第11期|共12页
  • 作者单位

    Queen Mary Univ London Sch Math London England;

    NIA Lab Cardiovasc Sci Biomed Res Ctr Intramural Res Program NIH Baltimore MD 21224 USA;

    NIA Lab Cardiovasc Sci Biomed Res Ctr Intramural Res Program NIH Baltimore MD 21224 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学;
  • 关键词

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