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Subunit rotation of ATP synthase embedded in membranes: a or β subunit rotation relative to the c subunit ring

机译:嵌入膜中的ATP合酶的亚基旋转:相对于c亚基环的a或β亚基旋转

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摘要

ATP synthase FoF1 (α3β3γδɛab2c10–14) couples an electrochemical proton gradient and a chemical reaction through the rotation of its subunit assembly. In this study, we engineered FoF1 to examine the rotation of the catalytic F1 β or membrane sector Fo a subunit when the Fo c subunit ring was immobilized; a biotin-tag was introduced onto the β or a subunit, and a His-tag onto the c subunit ring. Membrane fragments were obtained from Escherichia coli cells carrying the recombinant plasmid for the engineered FoF1 and were immobilized on a glass surface. An actin filament connected to the β or a subunit rotated counterclockwise on the addition of ATP, and generated essentially the same torque as one connected to the c ring of FoF1 immobilized through a His-tag linked to the α or β subunit. These results established that the γɛc10–14 and α3β3δab2 complexes are mechanical units of the membrane-embedded enzyme involved in rotational catalysis.
机译:ATP合酶FoF1(α3β3γδɛab2c10-14)通过其子单元装配体的旋转耦合电化学质子梯度和化学反应。在这项研究中,我们设计了FoF1来研究固定化Fo c亚基环时催化F1β或膜区段Fo a亚基的旋转。将生物素标签引入到β或亚基上,将His标签引入到c亚基环上。从携带用于工程化的FoF1的重组质粒的大肠杆菌细胞中获得膜片段,并将其固定在玻璃表面上。连接到β或亚基的肌动蛋白丝在添加ATP后逆时针旋转,并产生与通过连接到α或β亚基的His标签固定的FoF1 c环连接的肌动蛋白丝基本相同的扭矩。这些结果表明,γɛc10-14和α 3 β 3 δab 2 配合物是参与旋转催化的膜包埋酶的机械单元。 。

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