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First crystal structure of an endo-levanase – the BT1760 from a human gut commensal Bacteroides thetaiotaomicron

机译:内切核酸酶的第一个晶体结构– BT1760来自人类肠道共生的拟杆菌(Bacteroides thetaiotaomicron)

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摘要

The endo-levanase BT1760 of a human gut commensal Bacteroides thetaiotaomicron randomly cuts a β-2,6-linked fructan, levan, into fructo-oligosaccharides providing a prebiotic substrate for gut microbiota. Here we introduce the crystal structure of BT1760 at resolution of 1.65 Å. The fold of the enzyme is typical for GH32 family proteins: a catalytic N-terminal five-bladed β-propeller connected with a C-terminal β-sandwich domain. The levantetraose-bound structure of catalytically inactive mutant E221A at 1.90-Å resolution reveals differences in substrate binding between the endo-acting fructanases. A shallow substrate-binding pocket of the endo-inulinase INU2 of Aspergillus ficuum binds at least three fructose residues at its flat bottom. In the levantetraose-soaked crystal of the endo-levanase E221A mutant the ligand was bent into the pond-like substrate pocket with its fructose residues making contacts at −3, −2, −1 and + 1 subsites residing at several pocket depths. Binding of levantetraose to the β-sandwich domain was not detected. The N- and C-terminal modules of BT1760 did not bind levan if expressed separately, the catalytic domain lost its activity and both modules tended to precipitate. We gather that endo-levanase BT1760 requires both domains for correct folding, solubility and stability of the protein.
机译:人类肠道共生细菌拟杆菌的生物内切酶BT1760将β-2,6-连接的果聚糖levan随机切成果糖低聚糖,为肠道菌群提供了益生元底物。在这里,我们介绍BT1760的晶体结构,分辨率为1.65Å。该酶的折叠是GH32家族蛋白的典型特征:催化的N端五叶β螺旋桨与C端β夹心结构域连接。催化失活的突变体E221A在1.90-Å分辨率下与左旋四糖结合的结构揭示了内在作用果糖酶之间底物结合的差异。榕曲霉内切菊糖酶INU2的浅底物结合口袋在其平底结合至少三个果糖残基。在内切糖​​酶E221A突变体的四糖浸透的晶体中,配体弯曲到池塘样底物袋中,其果糖残基在多个袋深度处与-3,-2,-1和+ 1亚位点接触。未检测到四糖与β-三明治结构域的结合。如果单独表达,BT1760的N和C端模块不会结合levan,催化结构域失去活性,两个模块都倾向于沉淀。我们收集到,内切葡聚糖酶BT1760需要两个域才能正确折叠蛋白质,溶解度和稳定性。

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