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Three-dimensional structure of the intact Thermus thermophilus H+-ATPase/synthase by electron microscopy

机译:完整的嗜热栖热菌H + -ATPase /合酶的三维结构的电子显微镜观察

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摘要

ATPases are unique rotary motors that are essential to all living organisms because of their role in energy interconversion. A three-dimensional reconstruction of the intact H+-ATPase/synthase from Thermus thermophilus has revealed the presence of two interconnected peripheral stalks, a well-defined central stalk, and a hexagonally shaped hydrophobic domain. The peripheral stalks are each attached to the water soluble sector at a noncatalytic subunit interface and extend down toward the membrane where they interact with a strong elongated tube of density that runs parallel to the membrane and connects the two stalks. The central stalk is well resolved, especially with respect to its interaction with a single catalytic subunit giving rise to an asymmetry comparable to that identified in F-ATPases. The hexagonal shape of the membrane domain might suggest the presence of 12 proteolipids arranged as dimers, analogous to the proposed arrangement in the related eukaryotic V-ATPases.
机译:ATP酶是独特的旋转马达,由于其在能量互变中的作用,对所有生物都是必不可少的。嗜热栖热菌完整H + -ATPase /合酶的三维重建显示存在两个相互连接的外围茎,定义明确的中心茎和六角形疏水域。外围茎杆分别在非催化亚基界面处连接至水溶性区域,并向下延伸至膜,在此处它们与平行于膜杆并连接两个茎杆的坚固的细长管相互作用。中央茎被很好地分辨,特别是在它与单个催化亚基的相互作用方面,产生了与F-ATPase中鉴定的相当的不对称性。膜结构域的六边形形状可能暗示存在12个蛋白脂质,这些蛋白脂质以二聚体形式排列,类似于相关真核V-ATPase中的拟议排列。

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