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用于角叉菜生物炼制的新型糖苷水解酶16家族酶的克隆、异源表达及生化特性分析

Cloning, Heterologous Expression, and Biochemical Characterization of a Novel Glycoside Hydrolase 16 Family Enzyme for Biorefinery of Furcellaria lumbricalis.

作者信息

Ning Limin, Wei Yanshang, Guo Zilong

机构信息

College of Medicine, Nanjing University of Chinese Medicine, Nanjing, 210023, China.

College of Food Science and Light Industry, Nanjing Tech University, Nanjing, 211816, China.

出版信息

Appl Biochem Biotechnol. 2025 Apr;197(4):2312-2327. doi: 10.1007/s12010-024-05152-6. Epub 2025 Jan 2.

DOI:10.1007/s12010-024-05152-6
PMID:39747741
Abstract

Carrageenan has strong structural heterogeneity, resulting in the production of several hybridized forms in nature. Furcellaran is a typical hybrid type of carrageenan that includes both κ-carrageenan and β-carrageenan motifs in its structure. The discovery and characterization of a novel furcellaranase is of great significance for investigating and determining the structures of carrageenan. Herein, a new GH 16 enzyme CeFurA, with furcellaran and porphyran degrading activities, was cloned, and it included 350 amino acid residues and has a predicted theoretical molecular weight of 40.45 kDa. The enzyme displayed the highest biological activity (824.64 U/mg) on furcellaran at 35 °C and pH 9.0. Notably, CeFurA has excellent temperature stability throughout the wide 25 to 40 °C temperature range. It is useful and promising to efficient prepare hybrid bk-carrageenan oligosaccharides and elucidate the fine structure of the hybrid polysaccharide and oligosaccharides. TLC and ESI-MS indicate that CeFurA, as an endo-type enzyme, can specifically act on DA-Gβ1 → 4DA-G and DA-G4Sβ1 → 4DA-G4S glycosidic linkages within the furcellaran, producing disaccharides, tetrasaccharides, and hexasaccharides as the primary products. The CeFurA exhibited a sandwich-like structure according to structural modeling, which contains an embedded catalytic chamber formed by the β folded sheets placed in a reversing manner by acting on the internal DA-G4Sβ1 → 4DA-G4S glycosidic link. These exceptional properties make CeFurA a powerful tool for studying the heterogeneity of carrageenan structures and producing COS in the industry.

摘要

卡拉胶具有很强的结构异质性,导致在自然界中产生几种杂交形式。角叉菜聚糖是一种典型的杂交型卡拉胶,其结构中同时包含κ-卡拉胶和β-卡拉胶基序。新型角叉菜聚糖酶的发现和表征对于研究和确定卡拉胶的结构具有重要意义。在此,克隆了一种具有角叉菜聚糖和紫菜聚糖降解活性的新型GH 16酶CeFurA,它包含350个氨基酸残基,预测理论分子量为40.45 kDa。该酶在35°C和pH 9.0条件下对角叉菜聚糖表现出最高的生物活性(824.64 U/mg)。值得注意的是,CeFurA在25至40°C的宽温度范围内具有出色的温度稳定性。它对于高效制备杂交bk-卡拉胶寡糖以及阐明杂交多糖和寡糖的精细结构是有用且有前景的。TLC和ESI-MS表明,CeFurA作为一种内切型酶,可以特异性作用于角叉菜聚糖内的DA-Gβ1→4DA-G和DA-G4Sβ1→4DA-G4S糖苷键,产生二糖、四糖和六糖作为主要产物。根据结构建模,CeFurA呈现出一种三明治状结构,其中包含一个由β折叠片以反向方式排列形成的嵌入式催化腔,通过作用于内部的DA-G4Sβ1→4DA-G4S糖苷键。这些优异的特性使CeFurA成为研究卡拉胶结构异质性和在工业中生产COS的有力工具。

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本文引用的文献

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Structural Insights into the Substrate Recognition and Catalytic Mechanism of a GH16 βκ-Carrageenase from .从. 中 GH16 βκ-卡拉胶酶的底物识别和催化机制的结构见解
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A Novel κ-Carrageenase from Marine Bacterium SM41: Heterologous Expression, Biochemical Characterization and Salt-Tolerance Mechanism Investigation.
一株海洋细菌 SM41 来源的新型 κ-卡拉胶酶:异源表达、生化特性及耐盐机制研究。
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