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Fungal lytic polysaccharide monooxygenases bind starch and β-cyclodextrin similarly to amylolytic hydrolases

机译:与淀粉分解水解酶类似,真菌裂解多糖单加氧酶结合淀粉和β-环糊精

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摘要

Starch-binding modules of family 20 (CBM20) are present in 60% of lytic polysaccharide monooxygenases (LPMOs) catalyzing the oxidative breakdown of starch, which highlights functional importance in LPMO activity. The substrate-binding properties of starch-active LMPOs, however, are currently unexplored. Affinities and binding-thermodynamics of two recombinant fungal LPMOs toward starch and β-cyclodextrin were shown to be similar to fungal CBM20s. Amplex Red assays showed ascorbate and Cu-dependent activity, which was inhibited in the presence of β-cylodextrin and amylose. Phylogenetically, the clustering of CBM20s from starch-targeting LPMOs and hydrolases was in accord with taxonomy and did not correlate to appended catalytic activity. Altogether, these results demonstrate that the CBM20-binding scaffold is retained in the evolution of hydrolytic and oxidative starch-degrading activities.
机译:家族60中的淀粉结合模块(CBM20)存在于60%的裂解性多糖单加氧酶(LPMO)中,催化淀粉的氧化分解,这突出了LPMO活性的功能重要性。但是,淀粉活性LMPO的底物结合特性目前尚未开发。两种重组真菌LPMO对淀粉和β-环糊精的亲和力和结合热力学显示与真菌CBM20相似。 Amplex Red检测显示抗坏血酸和Cu依赖的活性,在β-环糊精和直链淀粉存在下被抑制。从系统发育上看,来自靶向淀粉的LPMO和水解酶的CBM20s的聚类符合分类法,与附加的催化活性无关。总之,这些结果表明,结合CBM20的支架保留在水解和氧化淀粉降解活性的演变中。

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