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Subunit F modulates ATP binding and migration in the nucleotide-binding subunit B of the A1AO ATP synthase of Methanosarcina mazei Gö1

机译:亚基F调节methanosarcinamazeiGö1的a1aO aTp合酶的核苷酸结合亚基B中的aTp结合和迁移

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摘要

The interaction of the nucleotide-binding subunit B with subunit F is essential in coupling of ion pumping and ATP synthesis in A[subscript 1]A[subscript O] ATP synthases. Here we provide structural and thermodynamic insights on the nucleotide binding to the surface of subunits B and F of Methanosarcina mazei Gö1 A[subscript 1]A[subscript O] ATP synthase, which initiated migration to its final binding pocket via two transitional intermediates on the surface of subunit B. NMR- and fluorescence spectroscopy as well as ITC data combined with molecular dynamics simulations of the nucleotide bound subunit B and nucleotide bound B-F complex in explicit solvent, suggests that subunit F is critical for the migration to and eventual occupancy of the final binding site by the nucleotide of subunit B. Rotation of the C-terminus and conformational changes in subunit B are initiated upon binding with subunit F causing a perturbation that leads to the migration of ATP from the transition site 1 through an intermediate transition site 2 to the final binding site 3. This mechanism is elucidated on the basis of change in binding affinity for the nucleotide at the specific sites on subunit B upon complexation with subunit F. The change in enthalpy is further explained based on the fluctuating local environment around the binding sites.
机译:核苷酸结合亚基B与亚基F的相互作用对于A [下标1] A [下标O] ATP合酶中离子泵送和ATP合成的耦合至关重要。在这里,我们提供了与马氏甲烷八叠球菌Gö1A [下标1] A [下标O] ATP合酶亚基B和F的核苷酸结合的结构和热力学见解,该酶通过分子上的两个过渡中间体开始迁移至其最终结合口袋。 NMR和荧光光谱以及ITC数据与核苷酸结合的亚基B和核苷酸结合的BF络合物在显式溶剂中的分子动力学模拟相结合,表明亚基F对于向其的迁移和最终占据至关重要。最终的结合位点是由亚基B的核苷酸决定的。C末端的旋转和亚基B的构象变化是在与亚基F结合后引发的,从而引起扰动,从而导致ATP从过渡位点1迁移到中间过渡位点2到最终结合位点3。基于特定核苷酸对核苷酸的结合亲和力的变化,阐明了该机制。与亚基F络合后,亚基B上的c个位点。焓的变化是基于结合位点周围局部环境的波动进一步解释的。

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