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黄单胞菌甘露糖酶α1-6-甘露糖苷酶在支链杂合和复合糖加工中的异常β1-4-半乳糖苷酶活性。

Unusual β1-4-galactosidase activity of an α1-6-mannosidase from Xanthomonas manihotis in the processing of branched hybrid and complex glycans.

机构信息

Centre for Biologics Evaluation, Biologic and Radiopharmaceutical Drugs Directorate, Health Canada, Ottawa, Ontario, Canada.

Department of Biomedical and Molecular Sciences, Queen's University, Kingston, Ontario, Canada.

出版信息

J Biol Chem. 2022 Sep;298(9):102313. doi: 10.1016/j.jbc.2022.102313. Epub 2022 Jul 31.

Abstract

Mannosidases are a diverse group of glycoside hydrolases that play crucial roles in mannose trimming of oligomannose glycans, glycoconjugates, and glycoproteins involved in numerous cellular processes, such as glycan biosynthesis and metabolism, structure regulation, cellular recognition, and cell-pathogen interactions. Exomannosidases and endomannosidases cleave specific glycosidic bonds of mannoside linkages in glycans and can be used in enzyme-based methods for sequencing of isomeric glycan structures. α1-6-mannosidase from Xanthomonas manihotis is known as a highly specific exoglycosidase that removes unbranched α1-6 linked mannose residues from oligosaccharides. However, we discovered that this α1-6-mannosidase also possesses an unexpected β1-4-galactosidase activity in the processing of branched hybrid and complex glycans through our use of enzymatic reactions, high performance anion-exchange chromatography, and liquid chromatography mass spectrometric sequencing. Our docking simulation of the α1-6-mannosidase with glycan substrates reveals potential interacting residues in a relatively shallow pocket slightly differing from its homologous enzymes in the glycoside hydrolase 125 family, which may be responsible for the observed higher promiscuity in substrate binding and subsequent terminal glycan hydrolysis. This observation of novel β1-4-galactosidase activity of the α1-6-mannosidase provides unique insights into its bifunctional activity on the substrate structure-dependent processing of terminal α1-6-mannose of unbranched glycans and terminal β1-4-galactose of hybrid and complex glycans. The finding thus suggests the dual glycosidase specificity of this α1-6-mannosidase and the need for careful consideration when used for the structural elucidation of glycan isomers.

摘要

甘露糖苷酶是糖苷水解酶家族中的一个多样化的酶类,在寡甘露糖聚糖、糖缀合物和糖蛋白中的甘露糖修剪中发挥着关键作用,这些糖参与了许多细胞过程,如聚糖生物合成和代谢、结构调节、细胞识别和细胞-病原体相互作用。外切甘露糖苷酶和内切甘露糖苷酶切割聚糖中甘露糖苷键的特定糖苷键,可以用于基于酶的方法来测序异构糖结构。黄单胞菌甘露糖苷酶是一种已知的高度特异性的外切糖苷酶,它从寡糖中去除非分支的α1-6 连接的甘露糖残基。然而,我们通过酶促反应、高效阴离子交换色谱和液相色谱-质谱测序发现,这种α1-6-甘露糖苷酶在处理分支杂合和复合糖时还具有意想不到的β1-4-半乳糖苷酶活性。我们对α1-6-甘露糖苷酶与糖基底物的对接模拟揭示了相对较浅的口袋中潜在的相互作用残基,与糖苷水解酶 125 家族中的同源酶略有不同,这可能是导致观察到更高的底物结合和随后末端糖水解的变构性的原因。这种α1-6-甘露糖苷酶的新型β1-4-半乳糖苷酶活性的观察为其在依赖于底物结构的未分支糖末端α1-6-甘露糖和杂合和复合糖末端β1-4-半乳糖的加工中的双功能活性提供了独特的见解。这一发现表明了这种α1-6-甘露糖苷酶的双重糖苷酶特异性,在用于糖异构体的结构阐明时需要谨慎考虑。

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