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Activity and Dynamics of an Enzyme Pig Liver Esterase in Near-Anhydrous Conditions

机译:酶猪肝酯酶在无水条件下的活性和动力学

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摘要

Water is widely assumed to be essential for life, although the exact molecular basis of this requirement is unclear. Water facilitates protein motions, and although enzyme activity has been demonstrated at low hydrations in organic solvents, such nonaqueous solvents may allow the necessary motions for catalysis. To examine enzyme function in the absence of solvation and bypass diffusional constraints we have tested the ability of an enzyme, pig liver esterase, to catalyze alcoholysis as an anhydrous powder, in a reaction system of defined water content and where the substrates and products are gaseous. At hydrations of 3 (±2) molecules of water per molecule of enzyme, activity is several orders-of-magnitude greater than nonenzymatic catalysis. Neutron spectroscopy indicates that the fast (≤nanosecond) global anharmonic dynamics of the anhydrous functional enzyme are suppressed. This indicates that neither hydration water nor fast anharmonic dynamics are required for catalysis by this enzyme, implying that one of the biological requirements of water may lie with its role as a diffusion medium rather than any of its more specific properties.
机译:尽管尚不清楚水的确切分子基础,但人们普遍认为水对于生命至关重要。水促进蛋白质的运动,尽管在有机溶剂中水合度低时已证明了酶的活性,但这种非水溶剂可能允许催化运动。为了在没有溶剂化和旁路扩散约束的情况下检查酶的功能,我们测试了一种酶(猪肝酯酶)在规定水含量的反应体系中以及底物和产物为气态的情况下催化无水粉末醇解的能力。 。每个酶分子水合3(±2)个水分子时,其活性比非酶催化作用大几个数量级。中子光谱表明,无水功能酶的快速(≤纳秒)全局非谐动力学受到抑制。这表明该酶的催化作用既不需要水合水,也不需要快速的非谐动力学,这意味着水的生物学要求之一可能在于其作为扩散介质的作用,而不是其任何更具体的特性。

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