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Cellodextrin Utilization by Bifidobacterium breve UCC2003▿ †

机译:短双歧杆菌UCC2003对纤维糊精的利用

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摘要

Cellodextrins, the incomplete hydrolysis products from insoluble cellulose, are accessible as a carbon source to certain members of the human gut microbiota, such as Bifidobacterium breve UCC2003. Transcription of the cldEFGC gene cluster of B. breve UCC2003 was shown to be induced upon growth on cellodextrins, implicating this cluster in the metabolism of these sugars. Phenotypic analysis of a B. breve UCC2003::cldE insertion mutant confirmed that the cld gene cluster is exclusively required for cellodextrin utilization by this commensal. Moreover, our results suggest that transcription of the cld cluster is controlled by a LacI-type regulator encoded by cldR, located immediately upstream of cldE. Gel mobility shift assays using purified CldRHis (produced by the incorporation of a His12-encoding sequence into the 3′ end of the cldC gene) indicate that the cldEFGC promoter is subject to negative control by CldRHis, which binds to two inverted repeats. Analysis by high-performance anion-exchange chromatography with pulsed amperometric detection (HPAEC-PAD) of medium samples obtained during growth of B. breve UCC2003 on a mixture of cellodextrins revealed its ability to utilize cellobiose, cellotriose, cellotetraose, and cellopentaose, with cellotriose apparently representing the preferred substrate. The cldC gene of the cld operon of B. breve UCC2003 is, to the best of our knowledge, the first described bifidobacterial β-glucosidase exhibiting hydrolytic activity toward various cellodextrins.
机译:纤维糊精是不溶性纤维素的不完全水解产物,可作为碳源供人类肠道菌群的某些成员(如短双歧杆菌UCC2003)用作碳源。短双歧杆菌UCC2003的cldEFGC基因簇的转录显示在纤维糊精上生长后被诱导,这暗示该簇参与这些糖的代谢。对短小芽孢杆菌UCC2003 :: cldE插入突变体的表型分析证实,通过此表彰,cld基因簇仅是纤维糊精利用所必需的。此外,我们的结果表明,cld簇的转录受cldR紧接上游的cldR编码的LacI型调节子控制。使用纯化的CldRHis(通过将His12编码序列掺入cldC基因的3'端而产生)的凝胶迁移率迁移分析表明,cldEFGC启动子受到CldRHis的阴性控制,后者与两个反向重复序列结合。高效阴离子交换色谱法通过脉冲安培检测(HPAEC-PAD)对在纤维糊精混合物上生长短双歧杆菌UCC2003期间获得的培养基样品进行分析,显示了其利用纤维二糖,纤维三糖,纤维四糖和纤维戊糖以及纤维三糖的能力。显然代表优选的基材。就我们所知,短双歧杆菌UCC2003的cld操纵子的cldC基因是第一个描述的双歧杆菌β-葡萄糖苷酶,对多种纤维糊精均具有水解活性。

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