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