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Mapping the Substrate Recognition Pathway in Cytochrome P450

机译:映射细胞色素P450中的底物识别途径

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Cytochrome P450s are ubiquitous metalloenzymes involved in the metabolism and detoxification of foreign components via catalysis of the hydroxylation reactions of a vast array of organic substrates. However, the mechanism underlying the pharmaceutically critical process of substrate access to the catalytic center of cytochrome P450 is a long-standing puzzle, further complicated by the crystallographic evidence of a closed catalytic center in both substrate-free and substrate-bound cytochrome P450. Here, we address a crucial question whether the conformational heterogeneity prevalent in cytochrome P450 translates to heterogeneous pathways for substrate access to the catalytic center of these metalloenzymes. By atomistically capturing the full process of spontaneous substrate association from bulk solvent to the occluded catalytic center of an archetypal system P450cam in multi-microsecond-long continuous unbiased molecular dynamics simulations, we here demonstrate that the substrate recognition in P450cam always occurs through a single well-defined dominant pathway. The simulated final bound pose resulting from these unguided simulations is in striking resemblance with the crystallographic bound pose. Each individual binding trajectory reveals that the substrate, initially placed at random locations in bulk solvent, spontaneously lands on a single key channel on the protein-surface of P450cam and resides there for an uncharacteristically long period, before correctly identifying the occluded target-binding cavity. Surprisingly, the passage of substrate to the closed catalytic center is not accompanied by any large-scale opening in protein. Rather, the unbiased simulated trajectories (similar to 57 mu s) and underlying Markov state model, in combination with free-energy analysis, unequivocally show that the substrate recognition process in P450cam needs a substrate-induced side-chain displacement coupled with a complex array of dynamical interconversions of multiple metastable substrate conformations. Further, the work reconciles multiple precedent experimental and theoretical observations on P450cam and establishes a comprehensive view of substrate-recognition in cytochrome P450 that only occurs via substrate-induced structural rearrangements.
机译:细胞色素P450是普遍存在的金属酶,通过催化大量有机底物的羟基化反应,参与外来成分的代谢和解毒。但是,底物接近细胞色素P450催化中心的药学关键过程的基本机制是一个长期存在的难题,并且由于无底物和结合底物的细胞色素P450中封闭的催化中心的晶体学证据进一步复杂化。在这里,我们解决了一个关键问题,即细胞色素P450中普遍存在的构象异质性是否转化为底物进入这些金属酶催化中心的异质途径。通过在多微秒长的连续无偏分子动力学模拟中原子捕获自体溶剂到原型系统P450cam的封闭催化中心的自发底物缔合的完整过程,我们在此证明P450cam中的底物识别始终通过单个孔进行定义的优势途径。由这些非制导模拟产生的模拟最终结合态与晶体学结合态极为相似。每个单独的结合轨迹表明,最初在基质溶剂中随机放置的底物会自发着陆在P450cam蛋白质表面上的单个关键通道上,并在此特征上停留较长的时间,然后才能正确识别被封闭的目标结合腔。令人惊讶地,底物通过到封闭的催化中心并没有伴随着蛋白质的任何大规模开放。相反,无偏差的模拟轨迹(类似于57μs)和基本的马尔可夫状态模型,结合自由能分析,明确表明P450cam中的底物识别过程需要底物诱导的侧链置换和复杂的阵列多个亚稳底物构象的动态相互转化的过程。此外,该工作调和了对P450cam的多个先验实验和理论观察,并建立了仅通过底物诱导的结构重排发生的细胞色素P450中底物识别的全面视图。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2018年第50期|17743-17752|共10页
  • 作者单位

    Tata Inst Fundamental Res, Ctr Interdisciplinary Sci, Hyderabad 500107, Telangana, India;

    Tata Inst Fundamental Res, Ctr Interdisciplinary Sci, Hyderabad 500107, Telangana, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 04:09:36

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