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首页> 外文期刊>Nature Communications >Timing of inorganic phosphate release modulates the catalytic activity of ATP-driven rotary motor protein
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Timing of inorganic phosphate release modulates the catalytic activity of ATP-driven rotary motor protein

机译:无机磷酸盐释放的时间调节了ATP驱动的旋转运动蛋白的催化活性

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摘要

F-1-ATPase is a rotary motor protein driven by ATP hydrolysis. The rotary motion of F-1-ATPase is tightly coupled to catalysis, in which the catalytic sites strictly obey the reaction sequences at the resolution of elementary reaction steps. This fine coordination of the reaction scheme is thought to be important to achieve extremely high chemomechanical coupling efficiency and reversibility, which is the prominent feature of F-1-ATPase among molecular motor proteins. In this study, we intentionally change the reaction scheme by using single-molecule manipulation, and we examine the resulting effect on the rotary motion of F-1-ATPase. When the sequence of the products released, that is, ADP and inorganic phosphate, is switched, we find that F-1 frequently stops rotating for a long time, which corresponds to inactivation of catalysis. This inactive state presents MgADP inhibition, and thus, we find that an improper reaction sequence of F-1-ATPase catalysis induces MgADP inhibition.
机译:F-1-ATPase是由ATP水解驱动的旋转运动蛋白。 F-1-ATPase的旋转运动与催化作用紧密耦合,其中催化位点在基本反应步骤的分辨率下严格遵守反应顺序。认为反应方案的这种精细协调对于实现极高的化学机械偶联效率和可逆性很重要,这是分子马达蛋白中F-1-ATPase的突出特征。在这项研究中,我们有意通过使用单分子操作来改变反应方案,并检查了结果对F-1-ATPase旋转运动的影响。当转换释放产物的顺序(即ADP和无机磷酸盐)时,我们发现F-1经常长时间停止旋转,这对应于催化失活。此非活动状态呈现MgADP抑制,因此,我们发现F-1-ATPase催化反应序列不正确会诱导MgADP抑制。

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