Catalytic properties characterization and degradation mode elucidation of a polyG-specific alginate lyase OUC-FaAly7

化学 三糖 基质(水族馆) 裂解酶 催化作用 酶 立体化学 生物化学 生物 生态学
作者
Yimiao Chen,Fangfang Ci,Hong Jiang,Di Meng,Hamed I. Hamouda,Chunhui Liu,Yongyi Quan,Suxue Chen,Xinxue Bai,Zhaohui Zhang,Xin Gao,Mohamed A. Balah,Xiangzhao Mao
出处
期刊:Carbohydrate Polymers [Elsevier BV]
卷期号:333: 121929-121929 被引量:9
标识
DOI:10.1016/j.carbpol.2024.121929
摘要

Polymerized guluronates (polyG)-specific alginate lyase with lower polymerized mannuronates (polyM)-degrading activity, superior stability, and clear action mode is a powerful biotechnology tool for the preparation of AOSs rich in M blocks. In this study, we expressed and characterized a polyG-specific alginate lyase OUC-FaAly7 from Formosa agariphila KMM3901. OUC-FaAly7 belonging to polysaccharide lyase (PL) family 7 had highest activity (2743.7 ± 20.3 U/μmol) at 45 °C and pH 6.0. Surprisingly, its specific activity against polyG reached 8560.2 ± 76.7 U/μmol, whereas its polyM-degrading activity was nearly 0 within 10 min reaction. Suggesting that OUC-FaAly7 was a strict polyG-specific alginate lyase. Importantly, OUC-FaAly7 showed a wide range of temperature adaptations and remarkable temperature and pH stability. Its relative activity between 20 °C and 45 °C reached >90 % of the maximum activity. The minimum identifiable substrate of OUC-FaAly7 was guluronate tetrasaccharide (G4). Action process and mode showed that it was a novel alginate lyase digesting guluronate hexaose (G6), guluronate heptaose (G7), and polymerized guluronates, with the preferential generation of unsaturated guluronate pentasaccharide (UG5), although which could be further degraded into unsaturated guluronate disaccharide (UG3) and trisaccharide (UG2). This study contributes to illustrating the catalytic properties, substrate recognition, and action mode of novel polyG-specific alginate lyases.
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