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晶体结构和突变分析揭示 XYP 亚家族环二肽合酶的关键决定因素对酶活性和底物特异性的影响。

Crystal Structure and Mutagenesis of an XYP Subfamily Cyclodipeptide Synthase Reveal Key Determinants of Enzyme Activity and Substrate Specificity.

机构信息

State Key Laboratory of Chemical Biology, Shanghai Institute of Organic Chemistry, University of Chinese Academy of Sciences (CAS), Shanghai 200032, China.

Shaanxi Natural Carbohydrate Resource Engineering Research Center, College of Food Science and Technology, Northwest University, Xi'an 710069, China.

出版信息

Biochemistry. 2024 Nov 19;63(22):2969-2976. doi: 10.1021/acs.biochem.4c00505. Epub 2024 Oct 30.

Abstract

Cyclodipeptide synthases (CDPSs) catalyze the synthesis of diverse cyclodipeptides (CDPs) by utilizing two aminoacyl-tRNA (aa-tRNA) substrates in a sequential ping-pong reaction mechanism. Numerous CDPSs have been characterized to provide precursors for diketopiperazines (DKPs) with diverse structural characteristics and biological activities. BcmA, belonging to the XYP subfamily, is a cyclo(l-Ile-l-Leu)-synthesizing CDPS involved in the biosynthesis of the antibiotic bicyclomycin. The structural basis and determinants influencing BcmA enzyme activity and substrate selectivity are not well understood. Here, we report the crystal structure of BcmA from . Through structural comparison and systematic site-directed mutagenesis, we highlight the significance of key residues located in the aminoacyl-binding pocket for enzyme activity and substrate specificity. In particular, the nonconserved residues D161 and K165 in pocket P2 are essential for the activity of BcmA without significant alteration of the substrate specificity, while the conserved residues F158 as well as F210 and S211 in P2 are responsible for determining substrate selectivity. These findings facilitate the understanding of how CDPSs selectively accept hydrophobic substrates and provide additional clues for the engineering of these enzymes for synthetic biology applications.

摘要

环二肽合酶(CDPSs)通过利用两种氨酰基-tRNA(aa-tRNA)底物在连续的乒乓反应机制中催化多种环二肽(CDPs)的合成。许多 CDPSs 已被表征,为具有不同结构特征和生物活性的二酮哌嗪(DKP)提供前体。BcmA 属于 XYP 亚家族,是一种参与抗生素双环霉素生物合成的环(l-Ile-l-Leu)合成环二肽合酶。BcmA 酶活性和底物选择性的影响因素及其结构基础尚未得到很好的理解。在这里,我们报道了. 的 BcmA 晶体结构。通过结构比较和系统的定点突变,我们强调了位于氨酰基结合口袋中的关键残基对酶活性和底物特异性的重要性。特别是口袋 P2 中的非保守残基 D161 和 K165 对于 BcmA 的活性至关重要,而不会显著改变底物特异性,而 P2 中的保守残基 F158 以及 F210 和 S211 负责决定底物选择性。这些发现有助于理解 CDPSs 如何选择性地接受疏水性底物,并为这些酶的工程改造提供了用于合成生物学应用的额外线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac5c/11580168/3be668e0134e/bi4c00505_0001.jpg

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