首页> 外文期刊>Acta physiologica Scandinavica >Muscle contraction as a Markov process. I: Energetics of the process.
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Muscle contraction as a Markov process. I: Energetics of the process.

机译:肌肉收缩是马尔可夫过程。 I:过程的能量学。

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摘要

Force generation during muscle contraction can be understood in terms of cyclical length changes in segments of actin thin filaments moving through the three-dimensional lattice of myosin thick filaments. Recent anomalies discovered in connection with analysis of myosin step sizes in in vitro motility assays and with skinned fibres can be rationalized by assuming that ATP hydrolysis on actin accompanies these length changes. The paradoxically rapid regeneration of tension in quick release experiments, as well as classical energetic relationships, such as Hill's force-velocity curve, the Fenn effect, and the unexplained enthalpy of shortening, can be given mutually self-consistent explanations with this model. When muscle is viewed as a Markov process, the vectorial process of chemomechanical transduction can be understood in terms of lattice dependent transitions, wherein the phosphate release steps of the myosin and actin ATPases depend only on occurrence of allosteric changes in neighbouring molecules. Tropomyosin has a central role in coordinating the steady progression of these cooperative transitions along actin filaments and in gearing up the system in response to higher imposed loads.
机译:肌肉收缩过程中的力产生可以理解为肌动蛋白细丝段通过肌球蛋白粗丝的三维晶格移动的周期性长度变化。通过假定肌动蛋白上的ATP水解伴随这些长度变化,可以合理化最近发现的与体外运动分析中肌球蛋白步长分析有关的异常以及与皮肤纤维有关的异常现象。在此模型中,相互矛盾的解释是快速释放实验中张力的反常快速再生以及经典的能量关系,例如希尔的力-速度曲线,芬恩效应和无法解释的缩短焓。当将肌肉视为马尔可夫过程时,化学机械转导的向量过程可以从晶格依赖性转变的角度来理解,其中肌球蛋白和肌动蛋白ATPase的磷酸盐释放步骤仅取决于相邻分子中变构变化的发生。 Tropomyosin在协调这些协同过渡沿着肌动蛋白丝的稳定进程中以及在对系统施加更高的负载做出响应方面起着核心作用。

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