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首页> 外文期刊>Computational and Structural Biotechnology Journal >Phylogenetic, functional and structural characterization of a GH10 xylanase active at extreme conditions of temperature and alkalinity
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Phylogenetic, functional and structural characterization of a GH10 xylanase active at extreme conditions of temperature and alkalinity

机译:GH10木聚糖酶在温度和碱度极端条件下活性的系统发育,功能和结构表征

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Endoxylanases active under extreme conditions of temperature and alkalinity can replace the use of highly pollutant chemicals in the pulp and paper industry. Searching for enzymes with these properties, we carried out a comprehensive bioinformatics study of the GH10 family. The phylogenetic analysis allowed the construction of a radial cladogram in which protein sequences putatively ascribed as thermophilic and alkaliphilic appeared grouped in a well-defined region of the cladogram, designated TAK Cluster. One among five TAK sequences selected for experimental analysis (Xyn11) showed extraordinary xylanolytic activity under simultaneous conditions of high temperature (90?°C) and alkalinity (pH 10.5). Addition of a carbohydrate binding domain (CBM2) at the C-terminus of the protein sequence further improved the activity of the enzyme at high pH. Xyn11 structure, which has been solved at 1.8?? resolution by X-ray crystallography, reveals an unusually high number of hydrophobic, ionic and hydrogen bond atomic interactions that could account for the enzyme’s extremophilic nature.
机译:在温度和碱度极端条件下活跃的Endoxylanaases可以取代纸浆和造纸工业中高度污染物的化学品。搜索酶与这些属性,我们对GH10家族进行了全面的生物信息学研究。系统发育分析允许构建径向覆盖图,其中患有嗜热和碱性的蛋白质序列出现在分组的克拉科特的明确界定区域中。选择用于实验分析的五个句子序列(XYN11)在高温(90℃)和碱度(pH1.1.5)的同时条件下显示出非凡的木聚糖活性。在蛋白质序列的C末端添加碳水化合物结合结构域(CBM2)进一步改善了高pH下酶的活性。 XYN11结构,它已经解决1.8 ??通过X射线晶体学分辨率,揭示了异常大量的疏水性,离子和氢键原子相互作用,其可能考虑酶的辐射性质。

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