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首页> 外文期刊>Molecular Microbiology >Functional characterization of a gene locus from an uncultured gut Bacteroides conferring xylo-oligosaccharides utilization to Escherichia coli
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Functional characterization of a gene locus from an uncultured gut Bacteroides conferring xylo-oligosaccharides utilization to Escherichia coli

机译:来自未培养的肠道拟杆菌的基因座的功能表征,可将木糖寡糖利用到大肠杆菌

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In prominent gut Bacteroides strains, sophisticated strategies have been evolved to achieve the complete degradation of dietary polysaccharides such as xylan, which is one of the major components of the plant cell wall. Polysaccharide Utilization Loci (PULs) consist of gene clusters encoding different proteins with a vast arsenal of functions, including carbohydrate binding, transport and hydrolysis. Transport is often attributed to TonB-dependent transporters, although major facilitator superfamily (MFS) transporters have also been identified in some PULs. However, until now, few of these transporters have been biochemically characterized. Here, we targeted a PUL-like system from an uncultivated Bacteroides species that is highly prevalent in the human gut metagenome. It encodes three glycoside-hydrolases specific for xylo-oligosaccharides, a SusC/SusD tandem homolog and a MFS transporter. We combined PUL rational engineering, metabolic and transcriptional analysis in Escherichia coli to functionally characterize this genomic locus. We demonstrated that the SusC and the MFS transporters are specific for internalization of linear xylo-oligosaccharides of polymerization degree up to 3 and 4 respectively. These results were strengthened by the study of growth dynamics and transcriptional analyses in response to XOS induction of the PUL in the native strain, Bacteroides vulgatus.
机译:在杰出的肠道拟杆菌菌株中,已经进化出复杂的策略来实现膳食多糖(如木聚糖)的完全降解,而木聚糖是植物细胞壁的主要成分之一。多糖利用位点(PULs)由编码不同蛋白质的基因簇组成,具有多种功能,包括碳水化合物结合,转运和水解。运输通常归因于依赖TonB的转运蛋白,尽管在一些PUL中也已经确定了主要的促进子超家族(MFS)转运蛋白。然而,直到现在,这些转运蛋白中几乎没有被生物化学表征。在这里,我们针对的是未经培养的拟杆菌属物种中的PUL样系统,该系统在人类肠道元基因组中高度流行。它编码三种木糖寡糖特异的糖苷水解酶,SusC / SusD串联同源物和MFS转运蛋白。我们结合大肠杆菌中的PUL理性工程,代谢和转录分析,以功能表征该基因组基因座。我们证明了SusC和MFS转运蛋白是专门针对线性度分别为3和4的线性木糖寡糖的内在化的。通过对天然菌株Bacteroides vulgatus中PUL的XOS诱导反应的生长动力学和转录分析研究,这些结果得到了加强。

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