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高分辨率的恒春新白蚁β-葡萄糖苷酶突变体结构为催化机制和糖缀合物的合成提供了见解。

High-resolution structures of Neotermes koshunensis β-glucosidase mutants provide insights into the catalytic mechanism and the synthesis of glucoconjugates.

作者信息

Jeng Wen-Yih, Wang Nai-Chen, Lin Cheng-Tse, Chang Wei-Jung, Liu Chia-I, Wang Andrew H-J

机构信息

Institute of Biological Chemistry, Academia Sinica, Taipei 115, Taiwan.

出版信息

Acta Crystallogr D Biol Crystallogr. 2012 Jul;68(Pt 7):829-38. doi: 10.1107/S0907444912013224. Epub 2012 Jun 19.

Abstract

NkBgl, a β-glucosidase from Neotermes koshunensis, is a β-retaining glycosyl hydrolase family 1 enzyme that cleaves β-glucosidic linkages in disaccharide or glucose-substituted molecules. β-Glucosidases have been widely used in several applications. For example, mutagenesis of the attacking nucleophile in β-glucosidase has been conducted to convert it into a glycosynthase for the synthesis of oligosaccharides. Here, several high-resolution structures of wild-type or mutated NkBgl in complex with different ligand molecules are reported. In the wild-type NkBgl structures it was found that glucose-like glucosidase inhibitors bind to the glycone-binding pocket, allowing the buffer molecule HEPES to remain in the aglycone-binding pocket. In the crystal structures of NkBgl E193A, E193S and E193D mutants Glu193 not only acts as the catalytic acid/base but also plays an important role in controlling substrate entry and product release. Furthermore, in crystal structures of the NkBgl E193D mutant it was found that new glucoconjugates were generated by the conjugation of glucose (hydrolyzed product) and HEPES/EPPS/opipramol (buffer components). Based on the wild-type and E193D-mutant structures of NkBgl, the glucosidic bond of cellobiose or salicin was hydrolyzed and a new bond was subsequently formed between glucose and HEPES/EPPS/opipramol to generate new glucopyranosidic products through the transglycosylation reaction in the NkBgl E193D mutant. This finding highlights an innovative way to further improve β-glucosidases for the enzymatic synthesis of oligosaccharides.

摘要

NkBgl是一种来自高雄新白蚁(Neotermes koshunensis)的β-葡萄糖苷酶,是一种β-保留型糖基水解酶家族1的酶,可切割二糖或葡萄糖取代分子中的β-糖苷键。β-葡萄糖苷酶已广泛应用于多种领域。例如,人们已对β-葡萄糖苷酶中起攻击作用的亲核试剂进行诱变,将其转化为用于合成寡糖的糖基合酶。在此,报道了野生型或突变型NkBgl与不同配体分子复合物的几种高分辨率结构。在野生型NkBgl结构中发现,类似葡萄糖的葡萄糖苷酶抑制剂与糖基结合口袋结合,使缓冲分子HEPES留在苷元结合口袋中。在NkBgl E193A、E193S和E193D突变体的晶体结构中,Glu193不仅作为催化酸/碱,还在控制底物进入和产物释放中起重要作用。此外,在NkBgl E193D突变体的晶体结构中发现,葡萄糖(水解产物)与HEPES/EPPS/奥匹哌醇(缓冲成分)结合产生了新的葡萄糖共轭物。基于NkBgl的野生型和E193D突变体结构,纤维二糖或水杨苷的糖苷键被水解,随后葡萄糖与HEPES/EPPS/奥匹哌醇之间形成新键,通过NkBgl E193D突变体中的转糖基化反应生成新的吡喃葡萄糖苷产物。这一发现突出了一种进一步改进β-葡萄糖苷酶用于寡糖酶促合成的创新方法。

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