Kiu Raymond, Treveil Agatha, Harnisch Lukas C, Caim Shabhonam, Leclaire Charlotte, van Sinderen Douwe, Korcsmaros Tamas, Hall Lindsay J
Gut Microbes & Health, Quadram Institute Bioscience, Norwich Research Park, Norwich NR4 7UQ, UK.
Gut Microbes & Health, Quadram Institute Bioscience, Norwich Research Park, Norwich NR4 7UQ, UK; Earlham Institute, Norwich Research Park, Norwich NR4 7UZ, UK.
iScience. 2020 Jul 24;23(7):101336. doi: 10.1016/j.isci.2020.101336. Epub 2020 Jul 2.
The underlying health-driving mechanisms of Bifidobacterium during early life are not well understood, particularly how this microbiota member may modulate the intestinal barrier via programming of intestinal epithelial cells (IECs). We investigated the impact of Bifidobacterium breve UCC2003 on the transcriptome of neonatal murine IECs. Small IECs from two-week-old neonatal mice administered B. breve UCC2003 or PBS (control) were subjected to global RNA sequencing, and differentially expressed genes, pathways, and affected cell types were determined. We observed extensive regulation of the IEC transcriptome with ∼4,000 genes significantly up-regulated, including key genes linked with epithelial barrier function. Enrichment of cell differentiation pathways was observed, along with an overrepresentation of stem cell marker genes, indicating an increase in the regenerative potential of the epithelial layer. In conclusion, B. breve UCC2003 plays a central role in driving intestinal epithelium homeostatic development during early life and suggests future avenues for next-stage clinical studies.
双歧杆菌在生命早期促进健康的潜在机制尚未完全明确,尤其是这种微生物群成员如何通过对肠上皮细胞(IECs)进行编程来调节肠道屏障。我们研究了短双歧杆菌UCC2003对新生小鼠IECs转录组的影响。对给予短双歧杆菌UCC2003或PBS(对照)的两周龄新生小鼠的小肠IECs进行全转录组测序,确定差异表达基因、通路和受影响的细胞类型。我们观察到IEC转录组受到广泛调控,约4000个基因显著上调,包括与上皮屏障功能相关的关键基因。观察到细胞分化通路的富集,以及干细胞标记基因的过度表达,表明上皮层的再生潜力增加。总之,短双歧杆菌UCC2003在生命早期驱动肠道上皮稳态发育中起核心作用,并为下一阶段的临床研究提供了未来的研究方向。