Graduate School of Science and Technology, Department of Applied Biology, Kyoto Institute of Technology, Sakyo-ku, Kyoto, 606-8585, Japan.
Department of Parasitology, National Institute of Infectious Diseases, 1-23-1 Toyama, Shinjuku-ku, Tokyo, 162-8640, Japan.
Sci Rep. 2017 Jul 7;7(1):4874. doi: 10.1038/s41598-017-05032-6.
Pyridoxal 5'-phosphate (PLP)-enzymes are essentially involved in amino acid and amine metabolism of a wide variety of organisms. Despite their extensive biochemical studies, there are little evidence and structural data to comprehensively elaborate the catalytic mechanism. We obtained X-ray snapshots of l-methionine γ-lyase from Entamoeba histolytica (EhMGL), a PLP-enzyme catalyzing the γ-elimination reaction of methionine. Here, we suggest a catalytic mechanism of EhMGL by using the X-ray snapshots covering all stages of this multistep catalysis reaction. Initial formation of a Michaelis complex is followed by the migration of double bond from the C4'=Nα-Cα moiety in an intermediate PLP-methionine imine to C4'-Nα=Cα in pyridoxamine 5'-phosphate (PMP)-α,β-dehydromethionine imine without intervention of a putative quinonoid intermediate. The enzyme can facilitate the subsequent γ-elimination of methanethiol by the possible general acid-base catalysis of Tyr108 for the E1cB mechanism, enabling to form the ene-imine C4'-Nα=Cα-Cβ=Cγ structure with the s-cis conformation, which is prerequisite for the non-enzymatic symmetry-allowed suprafacial [1,5]-hydrogen shift to complete the catalytic cycle by releasing α-ketobutyrate. The mechanism based on the X-ray snapshots is consistent with the reactivity of MGL toward methionine analogues. The generality of such a mechanism involving non-enzymatic concerted reaction in other PLP enzymes is discussed.
吡哆醛 5'-磷酸(PLP)-酶主要参与各种生物体的氨基酸和胺代谢。尽管对它们进行了广泛的生化研究,但很少有证据和结构数据来全面阐述其催化机制。我们获得了来自溶组织内阿米巴(EhMGL)的 l-蛋氨酸 γ-裂合酶的 X 射线快照,这是一种催化蛋氨酸 γ-消除反应的 PLP 酶。在这里,我们通过使用涵盖该多步催化反应所有阶段的 X 射线快照,提出了 EhMGL 的催化机制。首先形成迈克尔is复合物,然后双键从 PLP-蛋氨酸亚胺的 C4'=Nα-Cα 部分迁移到吡啶酮 5'-磷酸(PMP)-α,β-去甲蛋氨酸亚胺的 C4'-Nα=Cα,而无需中间醌型中间体的介入。该酶可以通过 Tyr108 对 E1cB 机制的可能广义酸碱催化,促进随后甲硫醇的 γ-消除,从而形成具有 s-cis 构象的 ene-imine C4'-Nα=Cα-Cβ=Cγ 结构,这是完成催化循环所必需的,通过释放α-酮丁酸来释放α-酮丁酸。基于 X 射线快照的机制与 MGL 对蛋氨酸类似物的反应性一致。讨论了这种涉及其他 PLP 酶中非酶促协同反应的机制的普遍性。