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通过生化、结构和计算分析研究的物种中祖先L-赖氨酸α-氧化酶的反应机制

Reaction Mechanism of Ancestral l-Lys α-Oxidase from Species Studied by Biochemical, Structural, and Computational Analysis.

作者信息

Motoyama Tomoharu, Yamamoto Yuta, Ishida Chiharu, Hasebe Fumihito, Kawamura Yui, Shigeta Yasuteru, Ito Sohei, Nakano Shogo

机构信息

Graduate Division of Nutritional and Environmental Sciences, University of Shizuoka, 52-1 Yada, Suruga-ku, Shizuoka 422-8526, Japan.

Department of Physics, Graduate School of Pure and Applied Sciences, University of Tsukuba, Tsukuba, Ibaraki 305-8577, Japan.

出版信息

ACS Omega. 2022 Nov 17;7(48):44407-44419. doi: 10.1021/acsomega.2c06334. eCollection 2022 Dec 6.

Abstract

The flavin-dependent amine oxidase superfamily contains various l-amino acid oxidases (LAAOs) bearing different substrate specificities and enzymatic properties. LAAOs catalyze the oxidation of the α-amino group of l-amino acids (L-AAs) to produce imino acids and HO. In this study, an ancestral l-Lys α-oxidase (AncLLysO2) was designed utilizing genome-mined sequences from the species. The AncLLysO2 exhibited high specificity toward l-Lys; the / values toward l-Lys were one and two orders larger than those of l-Arg and l-ornithine, respectively. Liquid chromatography-high resolution mass spectrometry analysis indicated that AncLLysO2 released imino acid immediately from the active site after completion of oxidation of the α-amino group. Crystal structures of the ligand-free, l-Lys- and l-Arg-bound forms of AncLLysO2 were determined at 1.4-1.6 Å resolution, indicating that the active site of AncLLysO2 kept an open state during the reaction and more likely to release products. The structures also indicated the substrate recognition mechanism of AncLLysO2; ε-amino, α-amino, and carboxyl groups of l-Lys formed interactions with Q357, A551, and R77, respectively. Biochemical and molecular dynamics simulation analysis of AncLLysO2 indicated that active site residues that indirectly interact with the substrate are also important to exhibit high activity; for example, the aromatic group of Y219 is important to ensure that the l-Lys substrate is placed in the correct position to allow the reaction to proceed efficiently. Taken together, we propose the reaction mechanism of AncLLysO2.

摘要

黄素依赖性胺氧化酶超家族包含多种具有不同底物特异性和酶学性质的L-氨基酸氧化酶(LAAOs)。LAAOs催化L-氨基酸(L-AAs)的α-氨基氧化生成亚氨基酸和H₂O₂。在本研究中,利用从该物种基因组中挖掘的序列设计了一种祖先型L-赖氨酸α-氧化酶(AncLLysO2)。AncLLysO2对L-赖氨酸表现出高特异性;对L-赖氨酸的Km / Vmax值分别比L-精氨酸和L-鸟氨酸大一个和两个数量级。液相色谱-高分辨率质谱分析表明,AncLLysO2在α-氨基氧化完成后立即从活性位点释放亚氨基酸。在1.4 - 1.6 Å分辨率下测定了AncLLysO2的无配体、L-赖氨酸结合和L-精氨酸结合形式的晶体结构,表明AncLLysO2的活性位点在反应过程中保持开放状态,更有可能释放产物。这些结构还表明了AncLLysO2的底物识别机制;L-赖氨酸的ε-氨基、α-氨基和羧基分别与Q357、A551和R77形成相互作用。AncLLysO2的生化和分子动力学模拟分析表明,与底物间接相互作用的活性位点残基对表现出高活性也很重要;例如,Y219的芳香基团对于确保L-赖氨酸底物处于正确位置以允许反应高效进行很重要。综上所述,我们提出了AncLLysO2的反应机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b753/9730747/25a479ff8ebd/ao2c06334_0002.jpg

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