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L-蛋氨酸 γ-裂解酶 Q349S 突变酶的特性及其对 L-高半胱氨酸活性增强的应用。

Characterization and application of l-methionine γ-lyase Q349S mutant enzyme with an enhanced activity toward l-homocysteine.

机构信息

Department of Biofunctional Chemistry, Graduate School of Environmental and Life Science, Okayama University, Okayama 700-8530, Japan.

Department of Applied Biology, Graduate School of Science and Technology, Kyoto Institute of Technology, Kyoto 606-8585, Japan.

出版信息

J Biosci Bioeng. 2022 Mar;133(3):213-221. doi: 10.1016/j.jbiosc.2021.11.008. Epub 2021 Dec 23.

Abstract

l-Methionine γ-lyse (MGL), a pyridoxal 5'-phosphate-dependent enzyme, catalyzes the α,γ-elimination of l-methionine (l-Met) and l-homocysteine (l-Hcy) to produce α-keto acids, thiols, and ammonia. Previously, various mutant enzymes of Pseudomonas putida MGL (PpMGL) were prepared to identify a homocysteine (Hcy)-specific enzyme that would assist the diagnosis of homocystinuria. Among the mutat enzymes the Q349S mutant exhibited high degradation activity toward l-Hcy. In the present study, PpMGL Q349S was characterized; the results suggested that it could be applied to determine the amount of l-Hcy. Compared to the wild-type PpMGL, specific activities of the Q349S mutant with l-Hcy and l-Met were 1.5 and 0.7 times, respectively. Additionally, we confirmed that l-Hcy in plasma samples could be accurately detected using the Q349S mutant by preincubating it with cysteine desulfurase (CsdA). Furthermore, we determined the X-ray crystal structure of PpMGL Q349S l-Met or l-Hcy complexes Michaelis complex, germinal diamine, and external aldimine at 2.25-2.40 Å. These 3D structures showed that the interaction partner of the β-hydroxyl group of Thr355 in the wild-type PpMGL was changed to the carboxyl group of the Hcy-PLP external aldimine in the Q349S mutant. The interaction of Ser349 and Arg375 was different between l-Met and l-Hcy recognition, indicating that it was important for the recognition of the carboxyl group of the substrate.

摘要

l-蛋氨酸 γ-裂解酶(MGL)是一种依赖吡哆醛 5'-磷酸的酶,可催化 l-蛋氨酸(l-Met)和 l-同型半胱氨酸(l-Hcy)的α,γ-消除反应,生成α-酮酸、硫醇和氨。先前,我们制备了恶臭假单胞菌 MGL(PpMGL)的各种突变酶,以鉴定一种可辅助同型胱氨酸尿症诊断的特异性同型半胱氨酸酶。在这些突变酶中,Q349S 突变酶对 l-Hcy 具有较高的降解活性。在本研究中,对 PpMGL Q349S 进行了表征;结果表明,它可用于测定 l-Hcy 的含量。与野生型 PpMGL 相比,Q349S 突变酶对 l-Hcy 和 l-Met 的比活性分别为 1.5 倍和 0.7 倍。此外,我们通过用半胱氨酸脱硫酶(CsdA)预先孵育,证实了可以使用 Q349S 突变酶准确检测血浆样品中的 l-Hcy。此外,我们确定了 PpMGL Q349S l-Met 或 l-Hcy 复合物的 X 射线晶体结构(Michaelis 复合物、原始二胺和外部醛亚胺),分辨率为 2.25-2.40 Å。这些 3D 结构表明,野生型 PpMGL 中 Thr355 的β-羟基的相互作用伙伴在 Q349S 突变体中变为 Hcy-PLP 外部醛亚胺的羧基。Ser349 和 Arg375 之间的相互作用在 l-Met 和 l-Hcy 识别中不同,表明其对底物羧基的识别很重要。

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