Sugahara Hirosuke, Odamaki Toshitaka, Fukuda Shinji, Kato Tamotsu, Xiao Jin-zhong, Abe Fumiaki, Kikuchi Jun, Ohno Hiroshi
Food Science and Technology Institute, Morinaga Milk Industry Co., Ltd., Zama, Kanagawa, Japan.
RIKEN Center for Integrative Medical Sciences, Yokohama, Kanagawa, Japan.
Sci Rep. 2015 Aug 28;5:13548. doi: 10.1038/srep13548.
Probiotics are well known as health-promoting agents that modulate intestinal microbiota. However, the molecular mechanisms underlying this effect remain unclear. Using gnotobiotic mice harboring 15 strains of predominant human gut-derived microbiota (HGM), we investigated the effects of Bifidobacterium longum BB536 (BB536-HGM) supplementation on the gut luminal metabolism. Nuclear magnetic resonance (NMR)-based metabolomics showed significantly increased fecal levels of pimelate, a precursor of biotin, and butyrate in the BB536-HGM group. In addition, the bioassay revealed significantly elevated fecal levels of biotin in the BB536-HGM group. Metatranscriptomic analysis of fecal microbiota followed by an in vitro bioassay indicated that the elevated biotin level was due to an alteration in metabolism related to biotin synthesis by Bacteroides caccae in this mouse model. Furthermore, the proportion of Eubacterium rectale, a butyrate producer, was significantly higher in the BB536-HGM group than in the group without B. longum BB536 supplementation. Our findings help to elucidate the molecular basis underlying the effect of B. longum BB536 on the gut luminal metabolism through its interactions with the microbial community.
益生菌作为调节肠道微生物群的健康促进剂而广为人知。然而,这种作用背后的分子机制仍不清楚。我们使用携带15种主要人类肠道来源微生物群(HGM)菌株的无菌小鼠,研究了补充长双歧杆菌BB536(BB536-HGM)对肠道腔内代谢的影响。基于核磁共振(NMR)的代谢组学分析显示,BB536-HGM组粪便中生物素前体庚二酸和丁酸盐的水平显著升高。此外,生物测定表明BB536-HGM组粪便中生物素水平显著升高。对粪便微生物群进行宏转录组分析,随后进行体外生物测定,结果表明,在该小鼠模型中,生物素水平升高是由于粪拟杆菌生物素合成相关代谢的改变所致。此外,丁酸盐产生菌直肠真杆菌在BB536-HGM组中的比例显著高于未补充长双歧杆菌BB536的组。我们的研究结果有助于阐明长双歧杆菌BB536通过与微生物群落相互作用对肠道腔内代谢产生影响的分子基础。