首页> 外文期刊>Journal of the American Chemical Society >Large-Scale Domain Conformational Change Is Coupled to the Activation of the Co-C Bond in the B_(12)-Dependent Enzyme Ornithine 4,5-Aminomutase: A Computational Study
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Large-Scale Domain Conformational Change Is Coupled to the Activation of the Co-C Bond in the B_(12)-Dependent Enzyme Ornithine 4,5-Aminomutase: A Computational Study

机译:大规模的域构象变化与B_(12)依赖的鸟氨酸鸟氨酸4,5-Aminomutase中的Co-C键的激活耦合:计算研究。

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摘要

We present here an energetic and atomistic description of how D-ornithine 4,5-aminomutase (OAM), an adenosylcobalamin (AdoCbl; coenzyme B_(12))-dependent iso- merase, employs a large-scale protein domain conformational change to orchestrate the homolytic rupture of the Co-C bond. Our results suggest that in going from the open form (catalytically inactive) to the closed form (catalytically active), the Rossmann domain of OAM effectively approaches the active site as a rigid body. It undergoes a combination of a ~S2° rotation and a ~14 A translation to bring AdoCbl- initially positioned ~25 A away-into the active-site cavity. This process is coupled to repositioning of the Ado moiety of AdoCbl from the eastern conformation to the northern conformation. Combined quantum mechanics and molecular mechanics calculations further indicate that in the open form, the protein environment does not impact significantly on the Co-C bond homolytic rupture, rendering it unusually stable, and thus catalytically inactive. Upon formation of the closed form, the Co-C bond is activated through the synergy of steric and electrostatic effects arising from tighter interactions with the surrounding enzyme. The more pronounced effect of the protein in the closed form gives rise to an elongated Co-C bond (by 0.03 A), puckering of the ribose and increased "strain" energy on the Ado group and to a lesser extent the corrin ring. Our computational studies reveal novel strategies employed by AdoCbl-dependent enzymes in the control of radical catalysis.
机译:在这里,我们对D-鸟氨酸4,5-氨基变位酶(OAM),腺苷钴胺素(AdoCbl;辅酶B_(12))依赖性异构酶如何利用大规模蛋白质结构域构象变化进行编排进行了充满活力和原子化的描述。 Co-C键的均质断裂我们的结果表明,从开放形式(无催化活性)到封闭形式(有催化活性),OAM的Rossmann域作为刚性体有效地接近了活性位点。它经过〜S2°旋转和〜14 A平移的组合,使最初位于〜25 A的AdoCbl-进入活动位腔。该过程与AdoCbl的Ado部分从东部构象到北部构象的重新定位有关。结合的量子力学和分子力学计算进一步表明,在开放形式下,蛋白质环境不会显着影响Co-C键的均质断裂,使其异常稳定,从而失去催化活性。形成封闭形式后,Co-C键通过与周围酶之间更紧密的相互作用而产生的空间和静电效应协同作用而被激活。封闭形式的蛋白质的更显着作用产生延长的Co-C键(增加0.03 A),核糖起皱并增加Ado基团上的“应变”能,并在较小程度上引起corrin环。我们的计算研究揭示了AdoCbl依赖性酶在控制自由基催化中采用的新策略。

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  • 来源
    《Journal of the American Chemical Society》 |2012年第4期|p.2367-2377|共11页
  • 作者单位

    School of Science, University of Greenwich, Medway Campus, Central Avenue, Chatham Maritime, Kent, ME4 4TB, United Kingdom.,Manchester Interdisciplinary Biocentre, University of Manchester, 131 Princess Street, Manchester Ml 7DN, United Kingdom,School of Chemical Engineering and Analytical Science, University of Manchester, 131 Princess Street, Manchester Ml 7DN, United Kingdom;

    Faculty of Life Sciences,University of Manchester, 131 Princess Street, Manchester Ml 7DN, United Kingdom;

    Faculty of Life Sciences,University of Manchester, 131 Princess Street, Manchester Ml 7DN, United Kingdom;

    Manchester Interdisciplinary Biocentre, University of Manchester, 131 Princess Street, Manchester Ml 7DN, United Kingdom,Fukui Institute for Fundamental Chemistry, Kyoto University, Kyoto 606-8103, Japan;

    Manchester Interdisciplinary Biocentre, University of Manchester, 131 Princess Street, Manchester Ml 7DN, United Kingdom,School of Chemical Engineering and Analytical Science, University of Manchester, 131 Princess Street, Manchester Ml 7DN, United Kingdom;

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