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Numerical analysis of ryanodine receptor activation by L-type channel activity in the cardiac muscle diad.

机译:心肌二联体中L型通道活性激活莱丹碱受体的数值分析。

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摘要

Computer simulations were used to examine the response of ryanodine receptors (RyRs) to the sarcolemmal calcium influx via L-type calcium channels (DHPRs). The effects of ryanodine receptor organization, diad geometry, DHPR single-channel current, and DHPR gating were examined. In agreement with experimental findings, the simulations showed that RyRs can respond rapidly (approximately 0.4 ms) to calcium influx via DHPRs. The responsiveness of the RyR depends on the geometrical arrangement between the RyRs and the DHPR in the diad, with wider diads being generally less responsive. When the DHPR single-channel current is small (approximately 25 fA), the organization of RyRs into small clusters results in an improved responsiveness. With experimentally observed DHPR mean open and closed times (0.17 ms and 4 ms, respectively) it is the first opening of the DHPR that is most likely to activate the RyR. A measure of the efficiency (Q) by which DHPR gating evokes sarcoplasmic reticulum release is defined. Q is at maximum for tau approximately 0.3 ms, and we interpret this finding in terms of the "tuning" of DHPR gating to RyR response. If certain cardiac myopathies are associated with a mismatch in the "tuning," then modification of DHPR gating with drugs to "retune" calcium-induced calcium release should be possible.
机译:计算机模拟被用来检查ryanodine受体(RyRs)通过L型钙通道(DHPRs)对肌膜钙流入的反应。研究了莱丹碱受体组织,二元组几何结构,DHPR单通道电流和DHPR门控的影响。与实验结果相吻合,模拟表明RyRs可以通过DHPR快速(约0.4 ms)对钙的流入做出反应。 RyR的响应度取决于RyR和DHAD中DHPR之间的几何排列,而较宽的Diad通常响应性较低。当DHPR单通道电流较小(大约25 fA)时,RyR组成小簇的结果将提高响应速度。通过实验观察到的DHPR平均打开和关闭时间(分别为0.17 ms和4 ms),这是DHPR的第一个打开最有可能激活RyR。定义了DHPR门控引起肌质网释放的效率(Q)的量度。 Q的最大tau值约为0.3 ms,我们根据DHPR门控对RyR反应的“调节”来解释这一发现。如果某些心脏肌病与“调节”中的不匹配有关,则应该有可能用药物修饰DHPR门控以“调节”钙诱导的钙释放。

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