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Discovery of a Xylooligosaccharide Oxidase from Myceliophthora thermophila C1

机译:从嗜热毁丝霉C1发现低聚木糖氧化酶

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摘要

By inspection of the predicted proteome of the fungus Myceliophthora thermophila C1 for vanillyl-alcohol oxidase (VAO)-type flavoprotein oxidases, a putative oligosaccharide oxidase was identified. By homologous expression and subsequent purification, the respective protein could be obtained. The protein was found to contain a bicovalently bound FAD cofactor. By screening a large number of carbohydrates, several mono- and oligosaccharides could be identified as substrates. The enzyme exhibits a strong substrate preference toward xylooligosaccharides; hence it is named xylooligosaccharide oxidase (XylO). Chemical analyses of the product formed upon oxidation of xylobiose revealed that the oxidation occurs at C1, yielding xylobionate as product. By elucidation of several XylO crystal structures (in complex with a substrate mimic, xylose, and xylobiose), the residues that tune the unique substrate specificity and regioselectivity could be identified. The discovery of this novel oligosaccharide oxidase reveals that the VAO-type flavoprotein family harbors oxidases tuned for specific oligosaccharides. The unique substrate profile of XylO hints at a role in the degradation of xylan-derived oligosaccharides by the fungus M. thermophila C1.
机译:通过检查真菌嗜热毁丝霉C1的预测蛋白质组中的香草醇氧化酶(VAO)型黄素蛋白氧化酶,鉴定出一种假定的寡糖氧化酶。通过同源表达和随后的纯化,可以获得相应的蛋白质。发现该蛋白质包含双价结合的FAD辅因子。通过筛选大量的碳水化合物,可以将几种单糖和寡糖鉴定为底物。该酶对木寡糖表现出强大的底物偏爱性。因此它被称为木寡糖氧化酶(XylO)。对木二糖氧化后形成的产物的化学分析表明,氧化发生在C1处,产生木二糖酸盐作为产物。通过阐明几种XylO晶体结构(与底物模拟物,木糖和木二糖复合),可以鉴定出调节独特底物特异性和区域选择性的残基。这种新型寡糖氧化酶的发现揭示了VAO型黄素蛋白家族具有针对特定寡糖调整的氧化酶。 XylO的独特底物特征暗示了由嗜热毁丝霉C1降解木聚糖衍生的寡糖的作用。

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