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单体亚基 c 的相互作用驱动 ATP 合酶亚基 a 插入膜中,并使 a-c 复合物形成处于预备状态。

Interaction with monomeric subunit c drives insertion of ATP synthase subunit a into the membrane and primes a-c complex formation.

机构信息

Department of Biochemistry, University of Saskatchewan, Saskatoon, Saskatchewan S7N 5E5, Canada.

Department of Biochemistry, University of Saskatchewan, Saskatoon, Saskatchewan S7N 5E5, Canada.

出版信息

J Biol Chem. 2011 Nov 4;286(44):38583-38591. doi: 10.1074/jbc.M111.294868. Epub 2011 Sep 7.

Abstract

Subunit a is the main part of the membrane stator of the ATP synthase molecular turbine. Subunit c is the building block of the membrane rotor. We have generated two molecular fusions of a and c subunits with different orientations of the helical hairpin of subunit c. The a/c fusion protein with correct orientation of transmembrane helices was inserted into the membrane, and co-incorporated into the F(0) complex of ATP synthase with wild type subunit c. The fused c subunit was incorporated into the c-ring tethering the ATP synthase rotor to the stator. The a/c fusion with incorrect orientation of the c-helices required wild type subunit c for insertion into the membrane. In this case, the fused c subunit remained on the periphery of the c-ring and did not interfere with rotor movement. Wild type subunit a inserted into the membrane equally well with wild type subunit c and c-ring assembly mutants that remained monomeric in the membrane. These results show that interaction with monomeric subunit c triggers insertion of subunit a into the membrane, and initiates formation of the a-c complex, the ion-translocating module of the ATP synthase. Correct assembly of the ATP synthase incorporating topologically correct fusion of subunits a and c validates using this model protein for high resolution structural studies of the ATP synthase proton channel.

摘要

亚基 a 是 ATP 合酶分子涡轮的膜定子的主要部分。亚基 c 是膜转子的构建块。我们已经生成了具有不同 c 亚基螺旋发夹取向的两个 a 和 c 亚基的分子融合物。具有正确跨膜螺旋取向的 a/c 融合蛋白被插入到膜中,并与野生型 c 亚基共同掺入到 ATP 合酶的 F(0) 复合物中。融合的 c 亚基被掺入到将 ATP 合酶转子固定到定子的 c 环中。具有不正确 c 螺旋取向的 a/c 融合物需要野生型 c 亚基插入到膜中。在这种情况下,融合的 c 亚基仍然留在 c 环的外围,并且不会干扰转子运动。野生型 a 亚基与野生型 c 亚基以及在膜中保持单体形式的 c 环组装突变体一样,都能很好地插入到膜中。这些结果表明,与单体 c 亚基的相互作用触发了 a 亚基插入到膜中,并启动了 a-c 复合物的形成,这是 ATP 合酶的离子转运模块。使用这种模型蛋白进行 ATP 合酶质子通道的高分辨率结构研究,证明了拓扑正确的亚基 a 和 c 的融合物的正确组装。

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