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Characterization and homology modelling of a novel multi-modular and multi-functional Paenibacillus mucilaginosus glycoside hydrolase

机译:一种新型多模块化和多功能Paenibacillus粘液糖苷水解酶的表征与同源性建模

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摘要

Glycoside hydrolases, particularly cellulases, xylanases and mannanases, are essential for the depolymerisation of lignocellulosic substrates in various industrial bio-processes. In the present study, a novel glycoside hydrolase from Paenibacillus mucilaginosus (PmGH) was expressed in E. coli, purified and characterised. Functional analysis indicated that PmGH is a 130 kDa thermophilic multi-modular and multi-functional enzyme, comprising a GH5, a GH6 and two CBM3 domains and exhibiting cellulase, mannanase and xylanase activities. The enzyme displayed optimum hydrolytic activities at pH 6 and 60 degrees C and moderate thermostability. Homology modelling of the full-length protein highlighted the structural and functional novelty of native PmGH, with no close structural homologs identified. However, homology modelling of the individual GH5, GH6 and the two CBM3 domains yielded excellent models based on related structures from the Protein Data Bank. The catalytic GH5 and GH6 domains displayed a (beta/alpha)(8) and a distorted seven stranded (beta/alpha) fold, respectively. The distinct homology at the domain level but low homology of the full-length protein suggests that this protein evolved by exogenous gene acquisition and recombination.
机译:糖苷水解酶,特别是纤维素酶,木聚糖酶和甘露甘露甘露酶,对于各种工业生物方法的木质纤维素基材的解聚是必要的。在本研究中,来自Paenibacillus mucilaginosus(PMGH)的新型糖苷水解酶在大肠杆菌中表达,纯化并表征。功能分析表明PMGH是130kDa嗜热的多模块化和多功能酶,包括GH5,GH6和两个CBM3结构域,并表现出纤维素酶,甘露酶和木聚糖酶活性。酶在pH6和60℃下显示最佳的水解活性和中等的热稳定性。全长蛋白质的同源性建模突出了原生PMGH的结构和功能性新颖性,没有鉴定无密切的结构同源物。然而,基于来自蛋白质数据库的相关结构,各个GH5,GH6和两个CBM3结构域的同源性建模产生了优异的模型。催化GH5和GH6结构域分别显示出(β/α)(8)和扭曲的七链(β/α)折叠。域水平的明显同源性,但全长蛋白质的低同源性表明该蛋白质通过外源基因采集和重组演变。

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