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通过静水压力探测酶促氢化物转移的平行途径和自由能景观。

Parallel pathways and free-energy landscapes for enzymatic hydride transfer probed by hydrostatic pressure.

作者信息

Pudney Christopher R, McGrory Tom, Lafite Pierre, Pang Jiayun, Hay Sam, Leys David, Sutcliffe Michael J, Scrutton Nigel S

机构信息

Faculty of Life Sciences and Manchester Interdisciplinary Biocentre, University of Manchester, 131 Princess Street, Manchester, M1 7DN, UK.

出版信息

Chembiochem. 2009 May 25;10(8):1379-84. doi: 10.1002/cbic.200900071.

Abstract

Mutation of an active-site residue in morphinone reductase leads to a conformationally rich landscape that enhances the rate of hydride transfer from NADH to FMN at standard pressure (1 bar). Increasing the pressure causes interconversion between different conformational substates in the mutant enzyme. While high pressure reduces the donor-acceptor distance in the wild-type enzyme, increased conformational freedom "dampens" its effect in the mutant.We show that hydride transfer from NADH to FMN catalysed by the N189A mutant of morphinone reductase occurs along parallel "chemical" pathways in a conformationally rich free-energy landscape. We have developed experimental kinetic and spectroscopic tools by using hydrostatic pressure to explore this free-energy landscape. The crystal structure of the N189A mutant enzyme in complex with the unreactive coenzyme analogue NADH(4) indicates that the nicotinamide moiety of the analogue is conformationally less restrained than the corresponding structure of the wild-type NADH(4) complex. This increased degree of conformational freedom in the N189A enzyme gives rise to the concept of multiple reactive configurations (MRCs), and we show that the relative population of these states across the free-energy landscape can be perturbed experimentally as a function of pressure. Specifically, the amplitudes of individual kinetic phases that were observed in stopped-flow studies of the hydride transfer reaction are sensitive to pressure; this indicates that pressure drives an altered distribution across the energy landscape. We show by absorbance spectroscopy that the loss of charge-transfer character of the enzyme-coenzyme complex is attributed to the altered population of MRCs on the landscape. The existence of a conformationally rich landscape in the N189A mutant is supported by molecular dynamics simulations at low and high pressure. The work provides firm experimental and computational support for the existence of parallel pathways arising from multiple conformational states of the enzyme-coenzyme complex. Hydrostatic pressure is a powerful and general probe of multidimensional energy landscapes that can be used to analyse experimentally parallel pathways for enzyme-catalysed reactions. We suggest that this is especially the case following directed mutation of a protein, which can lead to increased population of reactant states that are essentially inaccessible in the free-energy landscape of wild-type enzyme.

摘要

吗啡酮还原酶活性位点残基的突变导致了一个构象丰富的态势,该态势在标准压力(1巴)下提高了氢化物从NADH转移至FMN的速率。压力增加会导致突变酶中不同构象亚态之间的相互转换。虽然高压会减小野生型酶中供体-受体的距离,但增加的构象自由度在突变体中“减弱”了其影响。我们表明,吗啡酮还原酶的N189A突变体催化的从NADH到FMN的氢化物转移沿着平行的“化学”途径发生在一个构象丰富的自由能态势中。我们通过使用静水压力开发了实验动力学和光谱学工具来探索这个自由能态势。与无反应性辅酶类似物NADH(4)复合的N189A突变酶的晶体结构表明,该类似物的烟酰胺部分在构象上比野生型NADH(4)复合物的相应结构受到的限制更少。N189A酶中这种增加的构象自由度产生了多重反应构型(MRCs)的概念,并且我们表明,这些状态在自由能态势中的相对丰度可以通过实验作为压力的函数进行扰动。具体而言,在氢化物转移反应的停流研究中观察到的各个动力学相的幅度对压力敏感;这表明压力驱动了能量态势上分布的改变。我们通过吸收光谱表明,酶-辅酶复合物电荷转移特性的丧失归因于态势上MRCs丰度的改变。N189A突变体中构象丰富态势的存在得到了低压和高压下分子动力学模拟的支持。这项工作为酶-辅酶复合物的多个构象状态产生的平行途径的存在提供了坚实的实验和计算支持。静水压力是多维能量态势的一种强大而通用的探针,可用于实验分析酶催化反应的平行途径。我们认为,在蛋白质定向突变之后尤其如此,这可能导致野生型酶自由能态势中基本无法接近的反应物状态的丰度增加。

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