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Kinetics and thermodynamics of gas diffusion in a NiFe hydrogenase

机译:NiFe氢化酶中气体扩散的动力学和热力学

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摘要

We have investigated O 2 and H 2 transport across a NiFe hydrogenase at the atomic scale by means of computational methods. The Wild Type protein has been compared with the V74Q mutant. Two distinct methodologies have been applied to study the gas access to the active site. Temperature locally enhanced sampling simulations have emphasized the importance of protein dynamics on gas diffusion. The O 2 diffusion free energy profiles, obtained by umbrella sampling, are in agreement with the known kinetic data and show that in the V74Q mutant, the inhibition process is lowered from both a kinetic and a thermodynamic point of view.
机译:我们已经通过计算方法研究了原子尺度上NiFe氢化酶上O 2和H 2的迁移。已将野生型蛋白与V74Q突变体进行了比较。两种截然不同的方法已被用于研究进入活动地点的天然气。温度局部增强的采样模拟强调了蛋白质动力学对气体扩散的重要性。通过伞式采样获得的O 2扩散自由能曲线与已知的动力学数据一致,表明在V74Q突变体中,从动力学和热力学角度来看,抑制过程均降低。

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