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Structural analysis of the GH43 enzyme Xsa43E from Butyrivibrio proteoclasticus

机译:破壁丁酸杆菌GH43酶Xsa43E的结构分析

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摘要

The rumen of dairy cattle can be thought of as a large, stable fermentation vat and as such it houses a large and diverse community of microorganisms. The bacterium Butyrivibrio proteoclasticus is a representative of a significant component of this microbial community. It is a xylan-degrading organism whose genome encodes a large number of open reading frames annotated as fibre-degrading enzymes. This suite of enzymes is essential for the organism to utilize the plant material within the rumen as a fuel source, facilitating its survival in this competitive environment. Xsa43E, a GH43 enzyme from B. proteoclasticus, has been structurally and functionally characterized. Here, the structure of selenomethionine-derived Xsa43E determined to 1.3 Å resolution using single-wavelength anomalous diffraction is reported. Xsa43E possesses the characteristic five-bladed β-propeller domain seen in all GH43 enzymes. GH43 enzymes can have a range of functions, and the functional characterization of Xsa43E shows it to be an arabinofuranosidase capable of cleaving arabinose side chains from short segments of xylan. Full functional and structural characterization of xylan-degrading enzymes will aid in creating an enzyme cocktail that can be used to completely degrade plant material into simple sugars. These molecules have a range of applications as starting materials for many industrial processes, including renewable alternatives to fossil fuels.
机译:奶牛的瘤胃可以被认为是一个大型,稳定的发酵桶,因此它可以容纳大量多样的微生物。细菌破壁丁酸杆菌是该微生物群落重要组成部分的代表。它是一种降解木聚糖的生物,其基因组编码大量标注为纤维降解酶的开放阅读框。这套酶对于有机体利用瘤胃中的植物材料作为燃料至关重要,有助于其在这种竞争环境中的生存。 Xsa43E是一种来自破破支杆菌的GH43酶,已在结构和功能上进行了表征。在此,报道了使用单波长异常衍射将硒代蛋氨酸衍生的Xsa43E的结构确定为1.3Å的分辨率。 Xsa43E具有在所有GH43酶中都能看到的特征性的五叶β螺旋结构域。 GH43酶可以具有多种功能,Xsa43E的功能特性表明它是一种阿拉伯呋喃糖苷酶,能够从木聚糖的短链段切割阿拉伯糖侧链。木聚糖降解酶的全部功能和结构特征将有助于产生一种酶混合物,该混合物可用于将植物材料完全降解为简单的糖。这些分子作为许多工业过程的起始材料具有广泛的应用,包括化石燃料的可再生替代品。

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