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Crystal structure and substrate interactions of an unusual fungal non-CBM carrying GH26 endo-β-mannanase from Yunnania penicillata

机译:滇滇青霉菌携带GH26内切-β-甘露聚糖酶的真菌非CBM的晶体结构和底物相互作用

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Endo-β(1?→?4)-mannanases (endomannanases) catalyse degradation of β-mannans, an abundant class of plant polysaccharides. This study investigates structural features and substrate binding of YpenMan26A, a non-CBM carrying endomannanase from Yunnania penicillata. Structural and sequence comparisons to other fungal family GH26 endomannanases showed high sequence similarities and conserved binding residues, indicating that fungal GH26 endomannanases accommodate galactopyranosyl units in the ?3 and ?2 subsites. Two striking amino acid differences in the active site were found when the YpenMan26A structure was compared to a homology model of Wsp.Man26A from Westerdykella sp. and the sequences of nine other fungal GH26 endomannanases. Two YpenMan26A mutants, W110H and D37T, inspired by differences observed in Wsp.Man26A, produced a shift in how mannopentaose bound across the active site cleft and a decreased affinity for galactose in the ?2 subsite, respectively, compared to YpenMan26A. YpenMan26A was moreover found to have a flexible surface loop in the position where PansMan26A from Podospora anserina has an α-helix (α9) which interacts with its family 35 CBM. Sequence alignment inferred that the core structure of fungal GH26 endomannanases differ depending on the natural presence of this type of CBM. These new findings have implications for selecting and optimising these enzymes for galactomannandegradation.
机译:内切-β(1→→4)-甘露聚糖酶(内切甘露聚糖酶)催化β-甘露聚糖的降解,这是一类丰富的植物多糖。这项研究调查了YpenMan26A的结构特征和底物结合,YpenMan26A是一种非CBM携带的云南青霉内切甘露聚糖酶。与其他真菌家族GH26甘露聚糖酶的结构和序列比较显示出高度的序列相似性和保守的结合残基,表明真菌GH26甘露聚糖酶在β3和β2亚位点容纳了吡喃半乳糖苷单元。当将YpenMan26A结构与Westerdykella sp。的Wsp.Man26A同源模型进行比较时,发现活性位点有两个惊人的氨基酸差异。以及其他九种真菌GH26甘露聚糖酶的序列。与YpenMan26A相比,受Wsp.Man26A中观察到的差异的启发,两个YpenMan26A突变体W110H和D37T产生了一个变化,即在反应位点上,甘露戊糖结合的方式发生了转变,并且对α2亚位点中半乳糖的亲和力降低。此外,发现YpenMan26A在来自Popospora anserina的PansMan26A具有与其家人35 CBM相互作用的α-螺旋(α9)的位置具有柔性的表面环。序列比对表明,真菌GH26甘露聚糖酶的核心结构根据这种CBM的天然存在而不同。这些新发现对于选择和优化用于半乳甘露聚糖和降解的这些酶具有启示。

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