首页> 外文期刊>Applied Microbiology >A Novel Two-Component System, XygS/XygR, Positively Regulates Xyloglucan Degradation, Import, and Catabolism in Ruminiclostridium cellulolyticum
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A Novel Two-Component System, XygS/XygR, Positively Regulates Xyloglucan Degradation, Import, and Catabolism in Ruminiclostridium cellulolyticum

机译:一种新型的双组分系统,XYGS / XYGR,积极调节Xyloglucan降解,进口和分解代谢在ruminiclostridium cellulolyticum中

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Cellulolytic microorganisms play a key role in the global carbon cycle by decomposing structurally diverse plant biopolymers from dead plant matter. These microorganisms, in particular anaerobes such as Ruminiclostridium cellulolyticum that are capable of degrading and catabolizing several different polysaccharides, require a fine-tuned regulation of the biosynthesis of their polysaccharide-degrading enzymes. In this study, we present a bacterial regulatory system involved in the regulation of genes enabling the metabolism of the ubiquitous plant polysaccharide xyloglucan. The characterization of R. cellulolyticum knockout mutants suggests that the response regulator XygR and its cognate histidine kinase XygS are essential for growth on xyloglucan. Using in vitro and in vivo analyses, we show that XygR binds to the intergenic region and activates the expression of two polycistronic transcriptional units encoding an ABC transporter dedicated to the uptake of xyloglucan oligosaccharides and the two-component system itself together with three intracellular glycoside hydrolases responsible for the sequential intracellular degradation of the imported oligosaccharides into mono- and disaccharides. Interestingly, XygR also upregulates the expression of a distant gene coding for the most active extracellular cellulosomal xyloglucanase of R. cellulolyticum by binding to the upstream intergenic region.IMPORTANCE Ruminiclostridium cellulolyticum is a Gram-positive, mesophilic, anaerobic, cellulolytic, and hemicellulolytic bacterium. The last property qualifies this species as a model species for the study of hemicellulose degradation, import of degradation products, and overall regulation of these phenomena. In this study, we focus on the regulation of xyloglucan dextrin import and intracellular degradation and show that the two components of the two-component regulation system XygSR are essential for growth on xyloglucan and that the response regulator XygR regulates the transcription of genes involved in the extracellular degradation of the polysaccharide, the import of degradation products, and their intracellular degradation.
机译:纤维素分解微生物通过从死亡植物物质中分解结构不同的植物生物聚合物来说,在全球碳循环中起着关键作用。这些微生物,特别是厌氧体,例如能够降解和分解几种不同多糖的曲霉菌,例如曲霉菌纤维素,需要微观调节其多糖降解酶的生物合成调节。在这项研究中,我们提出了一种涉及基因调节的细菌调节系统,从而实现普遍存在的植物多糖木内葡聚糖的代谢。 R. Cellulolyticum敲除突变体的表征表明,反应调节剂XYGR及其同源组氨酸激酶XYG对于Xyloglucan的生长至关重要。在体外和体内分析中使用,XYGR与代苯格兰区域结合并激活编码专用于木葡聚糖寡糖和双组分系统本身的吸收的ABC转运蛋白的两种多顺声转录单元的表达以及三种细胞内糖苷水解酶负责将进口寡糖的顺序细胞内降解成单糖和二糖。有趣的是,XYGR还上调了通过与上游基因因子结合的R.纤维素溶解度的最活跃细胞外纤维素木葡聚糖葡聚糖酶的表达。预测轮升性纤维素溶解度是革兰氏阳性,嗜液,厌氧,纤维素分解和半纤维素分解细菌。最后一个物业将该物种符合研究半纤维素降解,进口降解产物的模型物种,以及这些现象的整体调节。在这项研究中,我们专注于Xyloglucan Dextrin进口和细胞内降解的调节,表明双组分调节系统的两种组分XYGSR对木瓜葡萄糖生长至关重要,并且响应调节剂XYGR调节参与的基因的转录多糖的细胞外降解,降解产物的进口及其细胞内降解。

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