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首页> 外文期刊>Journal of physical chemistry letters >All-Atom Simulations Disclose How Cytochrome Reductase Reshapes the Substrate Access/Egress Routes of Its Partner CYP450s
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All-Atom Simulations Disclose How Cytochrome Reductase Reshapes the Substrate Access/Egress Routes of Its Partner CYP450s

机译:All-Atom模拟公开了细胞色素还原酶如何重塑其合作伙伴CYP450S的基板访问/出口路线

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Cytochromes P450 enzymes (CYP450s) promote the oxidative metabolism of a variety of substrates via the electrons supplied by the cytochrome P450 reductase (CPR) and upon formation of a CPR/CYP450 adduct. In spite of the pivotal regulatory importance of this process, the impact of CPR binding on the functional properties of its partner CYP450 remains elusive. By performing multiple microsecond-long all-atom molecular dynamics simulations of a 520 000-atom model of a CPR/CYP450 adduct embedded in a membrane mimic, we disclose the molecular terms for their interactions, considering the aromatase (HA) enzyme as a proxy of the CYP450 family. Our study strikingly unveils that CPR binding alters HA's functional motions, bolstering a change in the shape and type of the channels traveled by substrates/products during their access/egress to/from the enzyme's active site. Our outcomes unprecedentedly contribute to extricate the many entangled facets of the CYP450 metabolon, redrafting its intricate panorama from an atomic-level perspective.
机译:细胞色素P450酶(CYP450S)通过细胞色素P450还原酶(CPR)提供的电子促进各种基材的氧化代谢和形成CPR / CYP450加合物。尽管该过程的关键监管重要性,CPR对其合作伙伴CYP450功能性质的影响仍然难以捉摸。通过执行嵌入膜模拟的CPR / CYP450加合物的520 000型型号的多个微秒全原子分子动力学模拟,我们将其相互作用的分子术语视为代理的芳香酶(HA)酶。 CYP450系列。我们的研究引人注目地推出CPR结合改变了HA的功能动作,在其在酶的有效部位进出/出口期间由基板/产物进行的衬底/产品行进的形状和类型的变化。我们的成果前所未有地有助于提取CYP450代谢物的许多纠缠面,从原子级角度重新处理其复杂的全景。

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