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新型海洋细菌 Muricauda eckloniae 内切α(1,4)-岩藻聚糖酶 Mef1 的结构与功能特性分析。

Structural and functional characterization of the novel endo-α(1,4)-fucoidanase Mef1 from the marine bacterium Muricauda eckloniae.

机构信息

Protein Chemistry and Enzyme Technology Section, Department of Biotechnology and Biomedicine, Technical University of Denmark, DK-2800 Kgs Lyngby, Denmark.

Department of Chemistry, Technical University of Denmark, DK-2800 Kgs Lyngby, Denmark.

出版信息

Acta Crystallogr D Struct Biol. 2023 Nov 1;79(Pt 11):1026-1043. doi: 10.1107/S2059798323008732. Epub 2023 Oct 25.

Abstract

Fucoidanases (EC 3.2.1.-) catalyze the hydrolysis of glycosidic bonds between fucose residues in fucoidans. Fucoidans are a compositionally and structurally diverse class of fucose-containing sulfated polysaccharides that are primarily found in brown seaweeds. Here, the structural characterization of a novel endo-α(1,4)-fucoidanase, Mef1, from the marine bacterium Muricauda eckloniae is presented, showing sequence similarity to members of glycoside hydrolase family 107. Using carbohydrate polyacrylamide gel electrophoresis and nuclear magnetic resonance analyses, it is shown that the fucoidanase Mef1 catalyzes the cleavage of α(1,4)-linkages between fucose residues sulfated on C2 in the structure [-3)-α-L-Fucp2S-(1,4)-α-L-Fucp2S-(1-] in fucoidan from Fucus evanescens. Kinetic analysis of Mef1 activity by Fourier transform infrared spectroscopy revealed that the specific Mef1 fucoidanase activity (U) on F. evanescens fucoidan was 0.1 × 10 U µM. By crystal structure determination of Mef1 at 1.8 Å resolution, a single-domain organization comprising a (β/α)-barrel domain was determined. The active site was in an extended, positively charged groove that is likely to be designed to accommodate the binding of the negatively charged, sulfated fucoidan substrate. The active site of Mef1 comprises the amino acids His270 and Asp187, providing acid/base and nucleophile groups, respectively, for the hydrolysis of glycosidic bonds in the fucoidan backbone. Electron densities were identified for two possible Ca ions in the enzyme, one of which is partially exposed to the active-site groove, while the other is very tightly coordinated. A water wire was discovered leading from the exterior of the Mef1 enzyme into the active site, passing the tightly coordinated Ca site.

摘要

褐藻糖胶酶(EC 3.2.1.-)催化褐藻糖胶中岩藻糖残基之间糖苷键的水解。褐藻糖胶是一种组成和结构多样的含岩藻糖的硫酸多糖,主要存在于褐藻中。本文介绍了海洋细菌 Muricauda eckloniae 中一种新型内切-α(1,4)-褐藻糖胶酶 Mef1 的结构特征,它与糖苷水解酶家族 107 的成员具有序列相似性。通过糖醛酸聚丙烯酰胺凝胶电泳和核磁共振分析表明,褐藻糖胶酶 Mef1 催化结构中 C2 位硫酸化的岩藻糖残基之间的 α(1,4)-键断裂[-3)-α-L-Fucp2S-(1,4)-α-L-Fucp2S-(1-]在来自 Fucus evanescens 的褐藻糖胶中。通过傅里叶变换红外光谱法对 Mef1 活性的动力学分析表明,Mef1 对 F. evanescens 褐藻糖胶的特异性褐藻糖胶酶活性(U)为 0.1 × 10 U μM。通过 1.8 Å 分辨率的 Mef1 晶体结构测定,确定了一个由(β/α)-桶状结构域组成的单结构域组织。活性位点位于一个伸展的、带正电荷的凹槽中,该凹槽可能被设计用于容纳带负电荷、硫酸化的褐藻糖胶底物的结合。Mef1 的活性位点包含氨基酸 His270 和 Asp187,分别为褐藻糖胶骨架中糖苷键的水解提供酸/碱和亲核基团。在酶中鉴定出两个可能的 Ca 离子的电子密度,其中一个部分暴露在活性位点凹槽中,另一个则被非常紧密地配位。发现了一条从 Mef1 酶外部通向活性位点的水线,穿过紧密配位的 Ca 位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7deb/10619423/c4502b9cb4fe/d-79-01026-fig1.jpg

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