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通过结构和分子动力学预测深入了解牛血清γ-谷氨酰转移酶的底物选择性。

New Insight into the Substrate Selectivity of Bovine Milk γ-glutamyl Transferase via Structural and Molecular Dynamics Predictions.

机构信息

Department of Food Science, Faculty of Science, University of Copenhagen, 1958 Frederiksberg C, Denmark.

Department of Biotechnology and Biomedicine, Technical University of Denmark, 2800 Kgs. Lyngby, Denmark.

出版信息

Molecules. 2023 Jun 9;28(12):4657. doi: 10.3390/molecules28124657.

Abstract

Bovine milk γ-glutamyltransferase (BoGGT) can produce γ-glutamyl peptides using L-glutamine as a donor substrate, and the transpeptidase activity is highly dependent on both γ-glutamyl donors and acceptors. To explore the molecular mechanism behind the donor and acceptor substrate preferences for BoGGT, molecular docking and molecular dynamic simulations were performed with L-glutamine and L-γ-glutamyl--nitroanilide (γ-GNA) as donors. Ser450 is a crucial residue for the interactions between BoGGT and donors. BoGGT forms more hydrogen bonds with L-glutamine than γ-GNA, promoting the binding affinity between BoGGT and L-glutamine. Gly379, Ile399, and Asn400 are crucial residues for the interactions between the BoGGT intermediate and acceptors. The BoGGT intermediate forms more hydrogen bonds with Val-Gly than L-methionine and L-leucine, which can promote the transfer of the γ-glutamyl group from the intermediate to Val-Gly. This study reveals the critical residues responsible for the interactions of donors and acceptors with the BoGGT and provides a new understanding of the substrate selectivity and catalytic mechanism of GGT.

摘要

牛乳 γ-谷氨酰转移酶(BoGGT)可以使用 L-谷氨酰胺作为供体底物产生 γ-谷氨酰肽,其转肽酶活性高度依赖于 γ-谷氨酰供体和受体。为了探究 BoGGT 对供体和受体底物偏好的分子机制,采用分子对接和分子动力学模拟方法,以 L-谷氨酰胺和 L-γ-谷氨酰-对硝基苯胺(γ-GNA)作为供体。Ser450 是 BoGGT 与供体相互作用的关键残基。BoGGT 与 L-谷氨酰胺形成的氢键比 γ-GNA 多,促进了 BoGGT 与 L-谷氨酰胺的结合亲和力。Gly379、Ile399 和 Asn400 是 BoGGT 中间体与受体相互作用的关键残基。BoGGT 中间体与 Val-Gly 形成的氢键比 L-蛋氨酸和 L-亮氨酸多,这可以促进 γ-谷氨酰基从中间体转移到 Val-Gly。本研究揭示了负责供体和受体与 BoGGT 相互作用的关键残基,并为 GGT 的底物选择性和催化机制提供了新的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa94/10301124/9f7cca68c9e4/molecules-28-04657-g001.jpg

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