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首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Family 42 carbohydrate-binding modules display multiple arabinoxylan-binding interfaces presenting different ligand affinities.
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Family 42 carbohydrate-binding modules display multiple arabinoxylan-binding interfaces presenting different ligand affinities.

机译:家庭42碳水化合物结合模块显示呈现不同配体亲和力的多个阿拉伯木聚糖结合界面。

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摘要

Enzymes that degrade plant cell wall polysaccharides display a modular architecture comprising a catalytic domain bound to one or more non-catalytic carbohydrate-binding modules (CBMs). CBMs display considerable variation in primary structure and are grouped into 59 sequence-based families organized in the Carbohydrate-Active enZYme (CAZy) database. Here we report the crystal structure of CtCBM42A together with the biochemical characterization of two other members of family 42 CBMs from Clostridium thermocellum. CtCBM42A, CtCBM42B and CtCBM42C bind specifically to the arabinose side-chains of arabinoxylans and arabinan, suggesting that various cellulosomal components are targeted to these regions of the plant cell wall. The structure of CtCBM42A displays a beta-trefoil fold, which comprises 3 sub-domains designated as alpha, beta and gamma. Each one of the three sub-domains presents a putative carbohydrate-binding pocket where an aspartate residue located in a central position dominates ligand recognition. Intriguingly, the gamma sub-domain of CtCBM42A is pivotal for arabinoxylan binding, while the concerted action of beta and gamma sub-domains of CtCBM42B and CtCBM42C is apparently required for ligand sequestration. Thus, this work reveals that the binding mechanism of CBM42 members is in contrast with that of homologous CBM13s where recognition of complex polysaccharides results from the cooperative action of three protein sub-domains presenting similar affinities.
机译:降解植物细胞壁多糖的酶显示出模块化结构,该结构包含与一个或多个非催化性碳水化合物结合模块(CBM)结合的催化结构域。煤层气在一级结构上显示出很大的变化,并在碳水化合物活性酶(CAZy)数据库中分为59个基于序列的家族。在这里,我们报告CtCBM42A的晶体结构以及热纤梭菌家族42煤层气中其他两个成员的生化特征。 CtCBM42A,CtCBM42B和CtCBM42C与阿拉伯木聚糖和阿拉伯聚糖的阿拉伯糖侧链特异性结合,表明各种纤维素组分靶向于植物细胞壁的这些区域。 CtCBM42A的结构显示出一个β-三叶折叠,其中包含3个亚域,分别称为α,β和γ。三个亚结构域中的每一个都呈现出一个假定的碳水化合物结合口袋,其中位于中央位置的天冬氨酸残基占配体识别的主导地位。有趣的是,CtCBM42A的γ亚结构域对于阿拉伯木聚糖的结合至关重要,而显然CtCBM42B和CtCBM42C的β和γ亚结构域的协同作用对于螯合配体而言是必需的。因此,这项工作揭示了CBM42成员的结合机理与同源CBM13的结合机理相反,在同源CBM13s中,由于具有相似亲和力的三个蛋白质亚结构域的协同作用而导致对复杂多糖的识别。

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