Novel bile acid biosynthetic pathways are enriched in the microbiome of centenarians

微生物群 微生物学 胆汁酸 生物 胆酸 微生物代谢 生物化学 细菌 生物信息学 遗传学
作者
Yuko Sato,Koji Atarashi,Damian R. Plichta,Yasumichi Arai,Satoshi Sasajima,Sean M. Kearney,Wataru Suda,Kozue Takeshita,Takahiro Sasaki,Shoki Okamoto,Ashwin N. Skelly,Y Okamura,Hera Vlamakis,Youxian Li,Takeshi Tanoue,Hajime Takei,Hiroshi Nittono,Seiko Narushima,Junichiro Irie,Hiroshi Itoh
出处
期刊:Nature [Springer Nature]
卷期号:599 (7885): 458-464 被引量:540
标识
DOI:10.1038/s41586-021-03832-5
摘要

Centenarians have a decreased susceptibility to ageing-associated illnesses, chronic inflammation and infectious diseases1-3. Here we show that centenarians have a distinct gut microbiome that is enriched in microorganisms that are capable of generating unique secondary bile acids, including various isoforms of lithocholic acid (LCA): iso-, 3-oxo-, allo-, 3-oxoallo- and isoallolithocholic acid. Among these bile acids, the biosynthetic pathway for isoalloLCA had not been described previously. By screening 68 bacterial isolates from the faecal microbiota of a centenarian, we identified Odoribacteraceae strains as effective producers of isoalloLCA both in vitro and in vivo. Furthermore, we found that the enzymes 5α-reductase (5AR) and 3β-hydroxysteroid dehydrogenase (3β-HSDH) were responsible for the production of isoalloLCA. IsoalloLCA exerted potent antimicrobial effects against Gram-positive (but not Gram-negative) multidrug-resistant pathogens, including Clostridioides difficile and Enterococcus faecium. These findings suggest that the metabolism of specific bile acids may be involved in reducing the risk of infection with pathobionts, thereby potentially contributing to the maintenance of intestinal homeostasis.
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