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Electrostatic Interactions at the Catalytic Sites of F_1-ATPase

机译:F_1-ATPase催化位点的静电相互作用

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The first part of the paper is a short review of studies addressing the mechanisms of FoF1-type ATP synthases. In animal mitochondria, plant chloroplasts, and bacteria, FoF1 ATP synthases are reversible rotary molecular machines that utilize the energy of the transmembrane proton electrochemical potential gradient to catalyze ATP synthesis from ADP and inorganic phosphate Pi. Their distinguishing feature is that α and β subunits undergo significant conformational changes during rotor movement. The second part of the paper presents our calculations of the contributions from electrostatic interactions of the charged groups of the substrate (MgATP) and reaction products (MgADP and P_i) with the charged amino acid residues of the enzyme (oligomeric α_3β_3γ complex of bovine mitochondrial F_1-ATPase) to the energy changes associated with substrate binding and hydrolysis at the catalytic sites situated at the α.β subunit interface. In calculations, the conformational changes of α and β subunits during a catalytic cycle of ATP hydrolysis were assumed to be associated with unidirectional rotation of the central γ subunit. The estimates obtained are consistent with the idea that the energy-favorable process of ATP binding to an “open” catalytic site of F1-ATPase initiates the rotation of the γ subunit followed by ATP hydrolysis in another (“closed”) catalytic site of the enzyme.
机译:本文的第一部分是对有关FoF1型ATP合酶机制的研究的简短综述。在动物线粒体,植物叶绿体和细菌中,FoF1 ATP合成酶是可逆的旋转分子机器,利用跨膜质子电化学势梯度的能量催化ADP和无机磷酸盐Pi的ATP合成。它们的显着特征是在转子运动过程中,α和β亚基会发生明显的构象变化。本文的第二部分介绍了我们计算底物的带电基团(MgATP)和反应产物(MgADP和P_i)与酶的带电氨基酸残基(牛线粒体F_1的低聚α_3β_3γ复合物)的静电相互作用的贡献-ATPase)与位于底物α.β亚基界面处的底物结合和水解相关的能量变化。在计算中,假定在ATP水解的催化循环过程中,α和β亚基的构象变化与中心γ亚基的单向旋转有关。获得的估计值与以下想法一致:ATP与F1-ATPase的“开放”催化位点结合的能量有利过程引发γ亚基的旋转,随后在该酶另一个(“封闭”)催化位点进行ATP水解。酶。

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