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通过X射线晶体学和计算模型探索巨大芽孢杆菌CYP109A2的区域和立体选择性甾体羟基化作用。

Regio- and stereoselective steroid hydroxylation by CYP109A2 from Bacillus megaterium explored by X-ray crystallography and computational modeling.

作者信息

Jóźwik Ilona K, Bombino Elvira, Abdulmughni Ammar, Hartz Philip, Rozeboom Henriette J, Wijma Hein J, Kappl Reinhard, Janssen Dick B, Bernhardt Rita, Thunnissen Andy-Mark W H

机构信息

Biotransformation and Biocatalysis, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, The Netherlands.

Department of Biochemistry, Saarland University, Saarbrücken, Germany.

出版信息

FEBS J. 2023 Oct;290(20):5016-5035. doi: 10.1111/febs.16906. Epub 2023 Jul 21.

Abstract

The P450 monooxygenase CYP109A2 from Bacillus megaterium DSM319 was previously found to convert vitamin D3 (VD3) to 25-hydroxyvitamin D3. Here, we show that this enzyme is also able to convert testosterone in a highly regio- and stereoselective manner to 16β-hydroxytestosterone. To reveal the structural determinants governing the regio- and stereoselective steroid hydroxylation reactions catalyzed by CYP109A2, two crystal structures of CYP109A2 were solved in similar closed conformations, one revealing a bound testosterone in the active site pocket, albeit at a nonproductive site away from the heme-iron. To examine whether the closed crystal structures nevertheless correspond to a reactive conformation of CYP109A2, docking and molecular dynamics (MD) simulations were performed with testosterone and vitamin D3 (VD3) present in the active site. These MD simulations were analyzed for catalytically productive conformations, the relative occurrences of which were in agreement with the experimentally determined stereoselectivities if the predicted stability of each carbon-hydrogen bond was taken into account. Overall, the first-time determination and analysis of the catalytically relevant 3D conformation of CYP109A2 will allow for future small molecule ligand screening in silico, as well as enabling site-directed mutagenesis toward improved enzymatic properties of this enzyme.

摘要

先前发现,巨大芽孢杆菌DSM319中的P450单加氧酶CYP109A2可将维生素D3(VD3)转化为25-羟基维生素D3。在此,我们表明该酶还能够以高度区域和立体选择性的方式将睾酮转化为16β-羟基睾酮。为了揭示控制CYP109A2催化的区域和立体选择性类固醇羟基化反应的结构决定因素,解析了处于相似封闭构象的CYP109A2的两个晶体结构,其中一个显示活性位点口袋中有一个结合的睾酮,尽管处于远离血红素铁的非生产性位点。为了研究封闭的晶体结构是否仍然对应于CYP109A2的反应性构象,在活性位点存在睾酮和维生素D3(VD3)的情况下进行了对接和分子动力学(MD)模拟。对这些MD模拟进行了催化活性构象分析,如果考虑每个碳氢键的预测稳定性,其相对出现频率与实验确定的立体选择性一致。总体而言,首次对CYP109A2的催化相关三维构象进行测定和分析,将有助于未来在计算机上进行小分子配体筛选,并能够进行定点诱变以改善该酶的酶学性质。

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