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具有增强热稳定性的祖先哺乳动物家族 1B1 细胞色素 P450 的结构。

Structure of an ancestral mammalian family 1B1 cytochrome P450 with increased thermostability.

机构信息

Program in Biophysics, University of Michigan, Ann Arbor, Michigan 48109.

School of Chemistry and Molecular Biosciences, University of Queensland St. Lucia, Brisbane 4072, Australia.

出版信息

J Biol Chem. 2020 Apr 24;295(17):5640-5653. doi: 10.1074/jbc.RA119.010727. Epub 2020 Mar 10.

Abstract

Mammalian cytochrome P450 enzymes often metabolize many pharmaceuticals and other xenobiotics, a feature that is valuable in a biotechnology setting. However, extant P450 enzymes are typically relatively unstable, with values of ∼30-40 °C. Reconstructed ancestral cytochrome P450 enzymes tend to have variable substrate selectivity compared with related extant forms, but they also have higher thermostability and therefore may be excellent tools for commercial biosynthesis of important intermediates, final drug molecules, or drug metabolites. The mammalian ancestor of the cytochrome P450 1B subfamily was herein characterized structurally and functionally, revealing differences from the extant human CYP1B1 in ligand binding, metabolism, and potential molecular contributors to its thermostability. Whereas extant human CYP1B1 has one molecule of α-naphthoflavone in a closed active site, we observed that subtle amino acid substitutions outside the active site in the ancestor CYP1B enzyme yielded an open active site with four ligand copies. A structure of the ancestor with 17β-estradiol revealed only one molecule in the active site, which still had the same open conformation. Detailed comparisons between the extant and ancestor forms revealed increases in electrostatic and aromatic interactions between distinct secondary structure elements in the ancestral forms that may contribute to their thermostability. To the best of our knowledge, this represents the first structural evaluation of a reconstructed ancestral cytochrome P450, revealing key features that appear to contribute to its thermostability.

摘要

哺乳动物细胞色素 P450 酶通常代谢许多药物和其他外源性物质,这一特性在生物技术环境中很有价值。然而,现有的 P450 酶通常相对不稳定,最适温度约为 30-40°C。重建的祖先细胞色素 P450 酶与相关的现存形式相比,往往具有可变的底物选择性,但它们也具有更高的热稳定性,因此可能是商业合成重要中间体、最终药物分子或药物代谢物的极好工具。本文从结构和功能上对细胞色素 P450 1B 亚家族的哺乳动物祖先进行了表征,揭示了其与现存的人 CYP1B1 在配体结合、代谢和潜在热稳定性分子贡献方面的差异。虽然现存的人 CYP1B1 在封闭的活性部位有一个α-萘黄酮分子,但我们观察到,祖先 CYP1B 酶活性部位外的微小氨基酸取代产生了一个开放的活性部位,有四个配体分子。与 17β-雌二醇的祖先结构表明,活性部位只有一个分子,仍然具有相同的开放构象。现存形式和祖先形式之间的详细比较表明,在祖先形式中,不同二级结构元件之间的静电和芳香相互作用增加,这可能有助于其热稳定性。据我们所知,这是对重建的祖先细胞色素 P450 的首次结构评估,揭示了似乎有助于其热稳定性的关键特征。

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