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首页> 外文期刊>Nature structural & molecular biology >Proton-powered subunit rotation in single membrane-bound F_0F_1-ATP synthase
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Proton-powered subunit rotation in single membrane-bound F_0F_1-ATP synthase

机译:单个膜结合的F_0F_1-ATP合酶中质子驱动的亚基旋转

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Synthesis of ATP from ADP and phosphate, catalyzed by F_0F_1-ATP synthases, is the most abundant physiological reaction in almost any cell. F_0F_1-ATP synthases are membrane-bound enzymes that use the energy derived from an electrochemical proton gradient for ATP formation. We incorporated double-labeled F0F1-ATP synthases from Escherichia coli into liposomes and measured single-molecule fluorescence resonance energy transfer (FRET) during ATP synthesis and hydrolysis. The γ subunit rotates stepwise during proton transport–powered ATP synthesis, showing three distinct distances to the b subunits in repeating sequences. The average durations of these steps correspond to catalytic turnover times upon ATP synthesis as well as ATP hydrolysis. The direction of rotation during ATP synthesis is opposite to that of ATP hydrolysis.
机译:由F_0F_1-ATP合酶催化的ADP和磷酸盐合成ATP是几乎任何细胞中最丰富的生理反应。 F_0F_1-ATP合成酶是膜结合酶,其使用源自电化学质子梯度的能量形成ATP。我们将来自大肠杆菌的双标记F0F1-ATP合成酶掺入脂质体,并在ATP合成和水解过程中测量了单分子荧光共振能量转移(FRET)。在质子传输驱动的ATP合成过程中,γ亚基逐步旋转,在重复序列中显示出与b亚基的三个不同距离。这些步骤的平均持续时间对应于ATP合成以及ATP水解时的催化转换时间。 ATP合成过程中的旋转方向与ATP水解的方向相反。

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