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A Functionally Important Hydrogen-bonding Network at the βDP/αDP Interface of ATP Synthase

机译:功能重要的氢键网络 ATP的βDP/αDP界面 合酶

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摘要

ATP synthase uses a unique rotary mechanism to couple ATP synthesis and hydrolysis to transmembrane proton translocation. The F1 subcomplex has three catalytic nucleotide binding sites, one on each β subunit, at the interface to the adjacent α subunit. In the x-ray structure of F1 (Abrahams, J. P., Leslie, A. G. W., Lutter, R., and Walker, J. E. (1994) Nature 370, 621–628), the three catalytic β/α interfaces differ in the extent of inter-subunit interactions between the C termini of the β and α subunits. At the closed βDP/αDP interface, a hydrogen-bonding network is formed between both subunits, which is absent at the more open βTP/αTP interface and at the wide open βE/αE interface. The hydrogen-bonding network reaches from βL328 (Escherichia coli numbering) and βQ441 via αQ399, βR398, and αE402 to βR394, and ends in a cation/π interaction between βR394 and αF406. Using mutational analysis in E. coli ATP synthase, the functional importance of the βDP/αDP hydrogen-bonding network is demonstrated. Its elimination results in a severely impaired enzyme but has no pronounced effect on the binding affinities of the catalytic sites. A possible role for the hydrogen-bonding network in coupling of ATP synthesis/hydrolysis and rotation will be discussed.
机译:ATP合酶使用独特的旋转机制将ATP合成和水解耦合到跨膜质子易位。 F1亚复合物在与相邻α亚基的界面上具有三个催化核苷酸结合位点,每个β亚基上一个。在F1的X射线结构中(Abrahams,JP,Leslie,AGW,Lutter,R.和Walker,JE(1994)Nature 370,621–628),三个催化β/α界面的相互影响程度不同β和α亚基的C末端之间的-亚基相互作用。在封闭的βDP/αDP界面处,两个亚基之间均形成了氢键网络,而在更开放的βTP/αTP界面和开放的βE/αE界面处则不存在氢键网络。氢键网络从βL328(大肠杆菌编号)和βQ441经由αQ399,βR398和αE402到达βR394,并终止于βR394和αF406之间的阳离子/π相互作用。使用大肠杆菌ATP合酶中的突变分析,βDP/αDP氢键网络的功能重要性为 演示。消除它会导致酶的严重受损,但没有 对催化位点的结合亲和力有明显的影响。一个可能 键网络在ATP合成/水解偶联中的作用 和旋转将被讨论。

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