Bach Institute of Biochemistry, Research Centre of Biotechnology, Russian Academy of Sciences, Moscow 119071, Russia.
Department of Chemistry, Lomonosov Moscow State University, Moscow 119991, Russia.
Int J Mol Sci. 2023 Nov 10;24(22):16194. doi: 10.3390/ijms242216194.
Enzymes with expanded substrate specificity are good starting points for the design of biocatalysts for target reactions. However, the structural basis of the expanded substrate specificity is still elusive, especially in the superfamily of pyridoxal-5'-phosphate-dependent transaminases, which are characterized by a conserved organization of both the active site and functional dimer. Here, we analyze the structure-function relationships in a non-canonical D-amino acid transaminase from , which is active towards D-amino acids and primary ()-amines. A detailed study of the enzyme includes a kinetic analysis of its substrate scope and a structural analysis of the holoenzyme and its complex with phenylhydrazine-a reversible inhibitor and analogue of ()-1-phenylethylamine-a benchmark substrate of ()-selective amine transaminases. We suggest that the features of the active site of transaminase from , such as the flexibility of the R34 and R96 residues, the lack of bulky residues in the β-turn at the entrance to the active site, and the short O-pocket loop, facilitate the binding of substrates with and without α-carboxylate groups. The proposed structural determinants of the expanded substrate specificity can be used for the design of transaminases for the stereoselective amination of keto compounds.
具有扩展底物特异性的酶是设计针对目标反应的生物催化剂的良好起点。然而,扩展底物特异性的结构基础仍然难以捉摸,特别是在吡哆醛 5′-磷酸依赖性转氨酶的超家族中,其活性位点和功能二聚体的组织都具有保守性。在这里,我们分析了来自 的非典型 D-氨基酸转氨酶的结构-功能关系,该酶对 D-氨基酸和一级()-胺具有活性。对该酶的详细研究包括对其底物范围的动力学分析,以及对全酶及其与苯肼复合物的结构分析 - 苯肼是()-1-苯乙胺的可逆抑制剂和类似物,()-选择性胺转氨酶的基准底物。我们认为,转氨酶来自 的活性位点的特征,例如 R34 和 R96 残基的灵活性、活性位点入口处β-转角处没有大体积残基以及短的 O-口袋环,有利于与α-羧酸酯基团结合。扩展底物特异性的建议结构决定因素可用于设计用于酮化合物的立体选择性胺化的转氨酶。