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黄素-N5OOH 在黄素酶超家族中既是一种强亲核试剂又是一种碱基。

Flavin-N5OOH Functions as both a Powerful Nucleophile and a Base in the Superfamily of Flavoenzymes.

机构信息

State Key Laboratory of Physical Chemistry of Solid Surfaces and Fujian Provincial Key Laboratory of Theoretical and Computational Chemistry, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, 361005, P. R. China.

Institute of Chemistry and the Lise Meitner-Minerva Center for Computational Quantum Chemistry, The Hebrew University of Jerusalem, 91904, Jerusalem, Israel.

出版信息

Angew Chem Int Ed Engl. 2024 Apr 2;63(14):e202318629. doi: 10.1002/anie.202318629. Epub 2024 Feb 19.

Abstract

Flavoenzymes can mediate a large variety of oxidation reactions through the activation of oxygen. However, the O activation chemistry of flavin enzymes is not yet fully exploited. Normally, the O activation occurs at the C4a site of the flavin cofactor, yielding the flavin C4a-(hydro)hydroperoxyl species in monooxygenases or oxidases. Using extensive MD simulations, QM/MM calculations and QM calculations, our studies reveal the formation of the common nucleophilic species, Flavin-N5OOH, in two distinct flavoenzymes (RutA and EncM). Our studies show that Flavin-N5OOH acts as a powerful nucleophile that promotes C-N cleavage of uracil in RutA, and a powerful base in the deprotonation of substrates in EncM. We reason that Flavin-N5OOH can be a common reactive species in the superfamily of flavoenzymes, which accomplish generally selective general base catalysis and C-X (X=N, S, Cl, O) cleavage reactions that are otherwise challenging with solvated hydroxide ion base. These results expand our understanding of the chemistry and catalysis of flavoenzymes.

摘要

黄素酶可以通过氧气的激活来介导多种氧化反应。然而,黄素酶的 O 激活化学还没有被充分利用。通常,O 激活发生在黄素辅因子的 C4a 位,在单加氧酶或氧化酶中生成黄素 C4a-(氢)过氧物种。通过广泛的 MD 模拟、QM/MM 计算和 QM 计算,我们的研究揭示了在两种不同的黄素酶(RutA 和 EncM)中形成常见亲核物种黄素-N5OOH。我们的研究表明,黄素-N5OOH 可以作为一种强大的亲核试剂,促进 RutA 中尿嘧啶的 C-N 断裂,并且在 EncM 中作为底物去质子化的强大碱。我们推断,黄素-N5OOH 可以成为黄素酶超家族中的一种常见反应性物质,它可以完成通常具有选择性的广义碱催化和 C-X(X=N、S、Cl、O)断裂反应,而用溶剂化氢氧根离子碱则很难完成这些反应。这些结果扩展了我们对黄素酶化学和催化的理解。

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