Institute for Medical Microbiology and Hospital Epidemiology, Hannover Medical School, Hannover, Germany.
Institute of Microbiology and Epizootics, Department of Veterinary Medicine at the Freie Universität Berlin, Berlin, Germany.
Nature. 2018 Aug;560(7719):489-493. doi: 10.1038/s41586-018-0395-5. Epub 2018 Aug 8.
Alterations in enteric microbiota are associated with several highly prevalent immune-mediated and metabolic diseases, and experiments involving faecal transplants have indicated that such alterations have a causal role in at least some such conditions. The postnatal period is particularly critical for the development of microbiota composition, host-microbe interactions and immune homeostasis. However, the underlying molecular mechanisms of this neonatal priming period have not been defined. Here we report the identification of a host-mediated regulatory circuit of bacterial colonization that acts solely during the early neonatal period but influences life-long microbiota composition. We demonstrate age-dependent expression of the flagellin receptor Toll-like receptor 5 (TLR5) in the gut epithelium of neonate mice. Using competitive colonization experiments, we demonstrate that epithelial TLR5-mediated REG3γ production is critical for the counter-selection of colonizing flagellated bacteria. Comparative microbiota transfer experiments in neonate and adult wild-type and Tlr5-deficient germ-free mice reveal that neonatal TLR5 expression strongly influences the composition of the microbiota throughout life. Thus, the beneficial microbiota in the adult host is shaped during early infancy. This might explain why environmental factors that disturb the establishment of the microbiota during early life can affect immune homeostasis and health in adulthood.
肠道微生物群的改变与几种高度流行的免疫介导和代谢疾病有关,粪便移植实验表明,这种改变至少在某些情况下具有因果关系。出生后时期对微生物群组成、宿主-微生物相互作用和免疫稳态的发展特别关键。然而,这种新生儿启动期的潜在分子机制尚未确定。在这里,我们报告了一种宿主介导的细菌定植调节回路的鉴定,该回路仅在新生儿期起作用,但影响终生的微生物群组成。我们证明了新生小鼠肠道上皮细胞中鞭毛蛋白受体 Toll 样受体 5(TLR5)的年龄依赖性表达。通过竞争性定植实验,我们证明上皮 TLR5 介导的 REG3γ 产生对于定植鞭毛细菌的反选择至关重要。在新生和成年野生型和 Tlr5 缺陷型无菌小鼠中的比较微生物群转移实验揭示,新生儿 TLR5 表达强烈影响终生的微生物群组成。因此,成年宿主中的有益微生物群在婴儿期就已经形成。这可能解释了为什么在生命早期扰乱微生物群建立的环境因素会影响成年期的免疫稳态和健康。