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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >GH43 endo-arabinanase from Bacillus licheniformis: Structure, activity and unexpected synergistic effect on cellulose enzymatic hydrolysis
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GH43 endo-arabinanase from Bacillus licheniformis: Structure, activity and unexpected synergistic effect on cellulose enzymatic hydrolysis

机译:来自芽孢杆菌的GH43 Endo-Arabinanase酶:结构,活性和意外协同作用对纤维素酶水解

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摘要

The hydrolysis of the plant biomass provides many interesting opportunities for the generation of building blocks for the green chemistry industrial applications. An important progress has been made for the hydrolysis of the cellulosic component of the biomass while, for the hemicellulosic components, the advances are less straightforward. Here, we describe the cloning, expression and biochemical and structural characterization of BlAbnl, a GH43 arabinanase from Bacillus licheniformis. This enzyme is selective for linear arabinan and efficiently hydrolyzes this substrate, with a specific activity of 127 U/mg. The enzyme has optimal conditions for activity at pH 8.0 and 45 degrees C and its activity is only partially dependent of a bound calcium ion since 70% of the maximal activity is preserved even when 1 mM EDTA is added to the reaction medium. BlAbn1 crystal structure revealed a typical GH43 fold and narrow active site, which explains the selectivity for linear substrates. Unexpectedly, the enzyme showed a synergic effect with the commercial cocktail Accellerase 1500 on cellulose hydrolysis. Scanning Electron Microscopy, Solid-State NMR and relaxometry data indicate that the enzyme weakens the interaction between cellulose fibers in filter paper, thus providing an increased access to the cellulases of the cocktail. (C) 2018 Elsevier B.V. All rights reserved.
机译:植物生物量的水解为绿色化学工业应用的构建块提供了许多有趣的机会。对于生物质的纤维素成分的水解,对于半纤维素组分,已经进行了一个重要进展,而前提下则不太直接。在这里,我们描述了来自芽孢杆菌的Gh43阿拉伯酶的Blabnl的克隆,表达和生化和结构表征。该酶是针对线性阿拉伯南的选择性,并有效地水解该基材,具有127u / mg的特定活性。酶在pH 8.0和45℃下具有最佳条件,并且其活性仅依赖于结合的钙离子,因为即使将1mM EDTA加入到反应介质中,也可以保持最大活性的70%。 Blabn1晶体结构揭示了典型的GH43折叠和窄的活性位点,其解释了线性基材的选择性。出乎意料地,酶在纤维素水解上表现出与商业鸡尾酒偶联酶1500的协同作用。扫描电子显微镜,固态NMR和弛豫测量数据表明酶削弱了滤纸中纤维素纤维之间的相互作用,从而增加了对鸡尾酒的纤维素酶的增加。 (c)2018年elestvier b.v.保留所有权利。

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