首页> 外文期刊>The Journal of biological chemistry >Structural Enzymology of Cellvibrio japonicus Agd31B Protein Reveals α-Transglucosylase Activity in Glycoside Hydrolase Family 31
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Structural Enzymology of Cellvibrio japonicus Agd31B Protein Reveals α-Transglucosylase Activity in Glycoside Hydrolase Family 31

机译:Cellvibrio AGD31B蛋白的结构酶显示糖苷水解酶系列中的α-血葡糖基酶活性31

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The metabolism of the storage polysaccharides glycogen and starch is of vital importance to organisms from all domains of life. In bacteria, utilization of these α-glucans requires the concerted action of a variety of enzymes, including glycoside hydrolases, glycoside phosphorylases, and transglycosylases. In particular, transglycosylases from glycoside hydrolase family 13 (GH13) and GH77 play well established roles in α-glucan side chain (de)branching, regulation of oligo- and polysaccharide chain length, and formation of cyclic dextrans. Here, we present the biochemical and tertiary structural characterization of a new type of bacterial 1,4-α-glucan 4-α-glucosyltransferase from GH31. Distinct from 1,4-α-glucan 6-α-glucosyltransferases (EC 2.4.1.24) and 4-α-glucanotransferases (EC 2.4.1.25), this enzyme strictly transferred one glucosyl residue from α(1→4)-glucans in disproportionation reactions. Substrate hydrolysis was undetectable for a series of malto-oligosaccharides except maltose for which transglycosylation nonetheless dominated across a range of substrate concentrations. Crystallographic analysis of the enzyme in free, acarbose-complexed, and trapped 5-fluoro-β-glucosyl-enzyme intermediate forms revealed extended substrate interactions across one negative and up to three positive subsites, thus providing structural rationalization for the unique, single monosaccharide transferase activity of the enzyme.
机译:储存多糖糖原和淀粉的代谢对来自生命的生物至关重要。在细菌中,这些α-葡聚糖的利用需要各种酶的齐节作用,包括糖苷水解酶,糖苷磷酸酶和转基质化酶。特别地,来自糖苷水解酶系列13(GH13)和GH77中的转基质化酶在α-葡聚糖侧链(DE)分支,寡聚和多糖链长的调节和环状葡聚糖的形成中良好地产生了良好的作用。在这里,我们介绍了GH31的新型细菌1,4-α-葡聚糖4-α-葡糖糖基转移酶的生物化学和三级结构表征。不同于1,4-α-葡聚糖6-α-葡糖基转移酶(EC 2.4.1.24)和4-α-葡聚糖转移酶(EC 2.4.1.25),该酶严格转移了一种来自α(1→4)葡聚糖的葡萄糖残留物不合死的反应。除了在一系列底物浓度下仍然处于胰膜化的麦芽糖之外,对于一系列麦芽糖寡糖,底物水解是不可检测的。自由,氨基吡咯络合物和捕获的5-氟-β-葡糖基酶中间体中间体的结晶分析显示出延伸的底物相互作用,呈一个阴性和最多三个正底座,从而为独特的单糖转移酶提供结构合理化酶的活性。

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