Gut bacteria convert glucocorticoids into progestins in the presence of hydrogen gas.

肠道细菌在氢气的作用下将糖皮质激素转化为孕激素

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作者:McCurry Megan D, D'Agostino Gabriel D, Walsh Jasmine T, Bisanz Jordan E, Zalosnik Ines, Dong Xueyang, Morris David J, Korzenik Joshua R, Edlow Andrea G, Balskus Emily P, Turnbaugh Peter J, Huh Jun R, Devlin A Sloan
Recent studies suggest that human-associated bacteria interact with host-produced steroids, but the mechanisms and physiological impact of such interactions remain unclear. Here, we show that the human gut bacteria Gordonibacter pamelaeae and Eggerthella lenta convert abundant biliary corticoids into progestins through 21-dehydroxylation, thereby transforming a class of immuno- and metabo-regulatory steroids into a class of sex hormones and neurosteroids. Using comparative genomics, homologous expression, and heterologous expression, we identify a bacterial gene cluster that performs 21-dehydroxylation. We also uncover an unexpected role for hydrogen gas production by gut commensals in promoting 21-dehydroxylation, suggesting that hydrogen modulates secondary metabolism in the gut. Levels of certain bacterial progestins, including allopregnanolone, better known as brexanolone, an FDA-approved drug for postpartum depression, are substantially increased in feces from pregnant humans. Thus, bacterial conversion of corticoids into progestins may affect host physiology, particularly in the context of pregnancy and women's health.

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