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人维生素 K 环氧化物还原酶作为其氧化还原蛋白的靶标。

Human Vitamin K Epoxide Reductase as a Target of Its Redox Protein.

机构信息

Centre Borelli, ENS Paris-Saclay, CNRS, Université Paris-Saclay, 4 Avenue Des Sciences, F-91190 Gif-sur-Yvette, France.

出版信息

Int J Mol Sci. 2022 Mar 31;23(7):3899. doi: 10.3390/ijms23073899.

Abstract

Human vitamin K epoxide reductase (hVKORC1) enzymatic activity requires an initial activation by a specific redox protein, a less studied step in the hVKORC1 vital cycle. Significant steric conditions must be met by enzymes, being that to adapt their configurations is mandatory for hVKORC1 activation. We studied, by molecular dynamics (MD) simulations, the folding and conformational plasticity of hVKORC1 in its inactive (fully oxidised) state using available structures, crystallographic and from de novo modelling. According to the obtained results, hVKORC1 is a modular protein composed of the stable transmembrane domain (TMD) and intrinsically disordered luminal (L) loop, possessing the great plasticity/adaptability required to perform various steps of the activation process. The docking (HADDOCK) of Protein Disulfide Isomerase (PDI) onto different hVKORC1 conformations clearly indicated that the most interpretable solutions were found on the target closed L-loop form, a prevalent conformation of hVKORC1's oxidised state. We also suggest that the cleaved L-loop is an appropriate entity to study hVKORC1 recognition/activation by its redox protein. Additionally, the application of hVKORC1 (membrane protein) in aqueous solution is likely to prove to be very useful in practice in either in silico studies or in vitro experiments.

摘要

人维生素 K 环氧化物还原酶(hVKORC1)的酶活性需要一种特定的氧化还原蛋白的初始激活,这是 hVKORC1 重要循环中研究较少的步骤。酶必须满足显著的空间条件,即适应其构象对于 hVKORC1 的激活是强制性的。我们通过分子动力学(MD)模拟,使用现有结构、晶体学和从头建模研究了 hVKORC1 在其非活性(完全氧化)状态下的折叠和构象可塑性。根据获得的结果,hVKORC1 是一种由稳定的跨膜结构域(TMD)和内在无序的腔(L)环组成的模块化蛋白质,具有执行激活过程各个步骤所需的巨大可塑性/适应性。蛋白二硫键异构酶(PDI)对接不同的 hVKORC1 构象清楚地表明,在目标封闭 L-环形式上找到了最可解释的解决方案,这是 hVKORC1 氧化状态的主要构象。我们还表明,裂解的 L-环是研究其氧化还原蛋白识别/激活 hVKORC1 的合适实体。此外,在水溶液中应用 hVKORC1(膜蛋白)在实践中可能被证明在计算机研究或体外实验中非常有用。

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