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首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Flexibility and enzyme activity of NADH oxidase from Thermus thermophilus in the presence of monovalent cations of Hofmeister series.
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Flexibility and enzyme activity of NADH oxidase from Thermus thermophilus in the presence of monovalent cations of Hofmeister series.

机译:Hofmeister系列单价阳离子存在下嗜热栖热菌NADH氧化酶的柔韧性和酶活性。

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Recently, we have shown that anions of Hofmeister series affect the enzyme activity through modulation of flexibility of its active site. The enzyme activity vs. anion position in Hofmeister series showed an unusual bell-shaped dependence. In the present work, six monovalent cations (Na(+), Gdm(+), NH(4)(+), Li(+), K(+) and Cs(+)) of Hofmeister series with chloride as a counterion have been studied in relation to activity and stability of flavoprotein NADH oxidase from Thermus thermophilus (NOX). With the exception of strongly chaotropic guanidinium cation, cations are significantly less effective in promoting the Hofmeister effect than anions mainly due to repulsive interactions of positive charges around the active site. Thermal denaturations of NOX reveal unfavorable electrostatic interaction at the protein surface that may be shielded to different extent by salts. Michaelis-Menten constants for NADH, accessibility of the active site as reflected by Stern-Volmer constants and activity of NOX at highcation concentrations (1-2 M) show bell-shaped dependences on cation position in Hofmeister series. Our analysis indicates that in the presence of kosmotropic cations the enzyme is more stable and possibly more rigid than in the presence of chaotropic cations. Molecular dynamic (MD) simulations of NOX showed that active site switches between open and closed conformations [J. Hritz, G. Zoldak, E. Sedlak, Cofactor assisted gating mechanism in the active site of NADH oxidase from Thermus thermophilus, Proteins 64 (2006) 465-476]. Enzyme activity, as well as substrate binding, can be regulated by the salt mediated perturbation of the balance between open and closed forms. We propose that compensating effect of accessibility and flexibility of the enzyme active site leads to bell-shaped dependence of the investigated parameters.
机译:最近,我们已经证明Hofmeister系列的阴离子通过调节其活性位点的柔性来影响酶的活性。 Hofmeister系列中的酶活性与阴离子位置之间显示出不同寻常的钟形依赖性。在目前的工作中,Hofmeister系列的六个单价阳离子(Na(+),Gdm(+),NH(4)(+),Li(+),K(+)和Cs(+))以氯化物为抗衡离子关于嗜热栖热菌(NOX)黄素蛋白NADH氧化酶的活性和稳定性的研究已经进行。除了强离液性胍盐阳离子外,阳离子在促进霍夫迈斯特效应方面的效果明显不如阴离子,这主要是由于活性位点周围正电荷的排斥相互作用。 NOX的热变性揭示了蛋白质表面上不利的静电相互作用,该相互作用可能被盐以不同程度屏蔽。 NADH的Michaelis-Menten常数,Stern-Volmer常数所反映的活性部位可及性以及在高阳离子浓度(1-2 M)下NOX的活性均显示出Hofmeister系列中钟形对阳离子位置的依赖性。我们的分析表明,在存在正离子的情况下,该酶比在离液阳离子的情况下更稳定,甚至可能更坚硬。 NOX的分子动力学(MD)模拟表明,活性位点在开放和闭合构象之间切换[J. Hritz,G.Zoldak,E.Sedlak,辅因子在来自嗜热栖热菌的NADH氧化酶活性位点的辅助门控机制,Proteins 64(2006)465-476]。酶活性以及底物结合可以通过盐介导的开放和封闭形式之间的平衡扰动来调节。我们提出,酶活性位点的可及性和柔性的补偿作用导致所研究参数的钟形依赖性。

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