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定点突变导致布氏锥虫内切-β-N-乙酰氨基葡萄糖苷酶的优化转糖基化活性。

Site-directed mutagenesis leads to the optimized transglycosylation activity of endo-beta-N-acetylglucosaminidase from Trypanosoma brucei.

机构信息

Key Laboratory of Carbohydrate Chemistry and Biotechnology, School of Biotechnology, Ministry of Education, Jiangnan University, Wuxi, 214122, China.

State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing, China.

出版信息

Glycoconj J. 2024 Oct;41(4-5):279-289. doi: 10.1007/s10719-024-10166-7. Epub 2024 Sep 28.

Abstract

Endo-β-N-acetylglucosaminidases (ENGases) are pivotal enzymes in the degradation and remodeling of glycoproteins, which catalyze the cleavage or formation of β-1,4-glycosidic bond between two N-acetylglucosamine (GlcNAc) residues in N-linked glycan chains. It was investigated that targeted mutations of amino acids in ENGases active site may modulate their hydrolytic and transglycosylation activities. Endo-Tb, the ENGase derived from Trypanosoma brucei, belongs to the glycoside hydrolase family 85 (GH85). Our group previously demonstrated that Endo-Tb exhibits hydrolytic activity toward high-mannose and complex type N-glycans and preliminarily confirmed its transglycosylation potential. In this study, we further optimized the transglycosylation activity of recombinant Endo-Tb by focusing on the N536A, E538A and Y576F mutants. A comparative analysis of their transglycosylation activity with that of the wild-type enzyme revealed that all mutants exhibited enhanced transglycosylation capacity. The N536A mutant exhibited the most pronounced improvement in transglycosylation activity with a significant reduction in hydrolytic activity. It is suggested that Endo-Tb N536A possesses the potential as a tool for synthesizing a wide array of glycoconjugates bearing high-mannose and complex type N-glycans.

摘要

内-β-N-乙酰氨基葡萄糖苷酶(ENGases)是糖蛋白降解和重塑的关键酶,它们催化 N-连接聚糖链中两个 N-乙酰葡萄糖胺(GlcNAc)残基之间β-1,4-糖苷键的裂解或形成。研究表明,ENGases 活性位点氨基酸的靶向突变可能调节其水解和转糖基化活性。内-β-Tb,来源于非洲锥虫的 ENGase,属于糖苷水解酶家族 85(GH85)。我们的研究小组先前证明,内-β-Tb 对高甘露糖和复杂型 N-聚糖具有水解活性,并初步证实了其转糖基化潜力。在本研究中,我们通过聚焦于 N536A、E538A 和 Y576F 突变体,进一步优化了重组内-β-Tb 的转糖基化活性。对它们的转糖基化活性与野生型酶的比较分析表明,所有突变体均表现出增强的转糖基化能力。N536A 突变体在转糖基化活性方面表现出最显著的改善,水解活性显著降低。这表明内-β-Tb N536A 具有作为合成具有高甘露糖和复杂型 N-聚糖的各种糖缀合物的工具的潜力。

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