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钙通过改变肌球蛋白的柔韧性来调节扇贝肌肉。

Calcium regulates scallop muscle by changing myosin flexibility.

作者信息

Azzu Vian, Yadin David, Patel Hitesh, Fraternali Franca, Chantler Peter D, Molloy Justin E

机构信息

Division of Physical Biochemistry, MRC National Institute for Medical Research, Mill Hill, NW7 1AA, London, UK.

出版信息

Eur Biophys J. 2006 Apr;35(4):302-12. doi: 10.1007/s00249-005-0036-4. Epub 2006 Jan 11.

Abstract

Muscle myosins are molecular motors that convert the chemical free energy available from ATP hydrolysis into mechanical displacement of actin filaments, bringing about muscle contraction. Myosin cross-bridges exert force on actin filaments during a cycle of attached and detached states that are coupled to each round of ATP hydrolysis. Contraction and ATPase activity of the striated adductor muscle of scallop is controlled by calcium ion binding to myosin. This mechanism of the so-called "thick filament regulation" is quite different to vertebrate striated muscle which is switched on and off via "thin filament regulation" whereby calcium ions bind to regulatory proteins associated with the actin filaments. We have used an optically based single molecule technique to measure the angular disposition adopted by the two myosin heads whilst bound to actin in the presence and absence of calcium ions. This has allowed us to directly observe the movement of individual myosin heads in aqueous solution at room temperature in real time. We address the issue of how scallop striated muscle myosin might be regulated by calcium and have interpreted our results in terms of the structures of smooth muscle myosin that also exhibit thick filament regulation.

摘要

肌肉肌球蛋白是一种分子马达,它将ATP水解产生的化学自由能转化为肌动蛋白丝的机械位移,从而引起肌肉收缩。在与每一轮ATP水解相偶联的附着和脱离状态循环中,肌球蛋白横桥对肌动蛋白丝施加力。扇贝横纹收肌的收缩和ATP酶活性受钙离子与肌球蛋白结合的控制。这种所谓的“粗肌丝调节”机制与脊椎动物横纹肌有很大不同,脊椎动物横纹肌通过“细肌丝调节”开启和关闭,即钙离子与肌动蛋白丝相关的调节蛋白结合。我们使用了一种基于光学的单分子技术,来测量在有钙离子和无钙离子存在的情况下,两个肌球蛋白头部与肌动蛋白结合时所采用的角向配置。这使我们能够在室温下实时直接观察单个肌球蛋白头部在水溶液中的运动。我们探讨了扇贝横纹肌肌球蛋白如何受钙离子调节的问题,并根据同样表现出粗肌丝调节的平滑肌肌球蛋白的结构来解释我们的结果。

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