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Different metabolic features of Bacteroides fragilis growing in the presence of glucose and exopolysaccharides of bifidobacteria

机译:葡萄糖和双歧杆菌胞外多糖存在下生长的脆弱类拟杆菌的不同代谢特征

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Bacteroides is among the most abundant microorganism inhabiting the human intestine. They are saccharolytic bacteria able to use dietary or host-derived glycans as energy sources. Some Bacteroides fragilis strains contribute to the maturation of the immune system but it is also an opportunistic pathogen. The intestine is the habitat of most Bifidobacterium species, some of whose strains are considered probiotics. Bifidobacteria can synthesize exopolysaccharides (EPSs), which are complex carbohydrates that may be available in the intestinal environment. We studied the metabolism of B. fragilis when an EPS preparation from bifidobacteria was added to the growth medium compared to its behavior with added glucose. 2D-DIGE coupled with the identification by MALDI-TOF/TOF evidenced proteins that were differentially produced when EPS was added. The results were supported by RT-qPCR gene expression analysis. The intracellular and extracellular pattern of certain amino acids, the redox balance and the α-glucosidase activity were differently affected in EPS with respect to glucose. These results allowed us to hypothesize that three general main events, namely the activation of amino acids catabolism, enhancement of the transketolase reaction from the pentose-phosphate cycle, and activation of the succinate-propionate pathway, promote a shift of bacterial metabolism rendering more reducing power and optimizing the energetic yield in the form of ATP when Bacteroides grow with added EPSs. Our results expand the knowledge about the capacity of B. fragilis for adapting to complex carbohydrates and amino acids present in the intestinal environment.
机译:拟杆菌属是人类肠道中最丰富的微生物之一。它们是糖酵解细菌,能够使用饮食或宿主来源的聚糖作为能源。一些脆弱的拟杆菌(Bacteroides fragilis)菌株有助于免疫系统的成熟,但它也是机会病原体。肠道是大多数双歧杆菌物种的栖息地,其中某些菌株被认为是益生菌。双歧杆菌可以合成胞外多糖(EPS),这是在肠道环境中可能会得到的复杂碳水化合物。当将双歧杆菌的EPS制剂添加到生长培养基中时,我们研究了脆弱的芽孢杆菌的代谢,与其添加葡萄糖的行为相比。 2D-DIGE与MALDI-TOF / TOF鉴定相结合,证明了添加EPS时产生的蛋白质差异。 RT-qPCR基因表达分析支持了该结果。 EPS中相对于葡萄糖,某些氨基酸的细胞内和细胞外模式,氧化还原平衡和α-葡萄糖苷酶活性受到不同的影响。这些结果使我们可以假设三个主要事件,即氨基酸分解代谢的激活,戊糖-磷酸盐循环中转酮醇酶反应的增强以及琥珀酸-丙酸酯途径的激活,促进了细菌代谢的转移,从而使更多的减少当杀菌剂与EPS一起生长时,可以增强ATP的功效并优化能量产量。我们的结果扩大了对脆弱芽孢杆菌适应肠道环境中复杂碳水化合物和氨基酸能力的认识。

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