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Biology subjects

Moser, S. O.

Publications and source records attributed to Moser, S. O..

2 recordsLinked to original sources

Human Gut Bacteria Convert Endogenous Steroids into Host Cortisol Shuttle Inhibitors

11{beta}-hydroxysteroid dehydrogenase 2 (HSD11B2) protects the mineralocorticoid receptor from glucocorticoid overstimulation by inactivating cortisol. HSD11B2 inhibition can drive receptor overactivation and contribute to hypertension; however, endogenous inhibitors remain poorly defined. Glycyrrhetinic acid-like factors (GALFs) are steroid-like metabolites that inhibit HSD11B2. Given the capacity of gut bacteria to metabolize host steroids, we hypothesized that the gut microbiome could generate GALF-like inhibitors. Here, we identify two 11-oxygenated steroid metabolites that potently inhibit human HSD11B2 in colonic cells and organoids, enabling cortisol-dependent mineralocorticoid receptor activation. We identify gut bacteria and enzymes that produce these compounds and show that their levels are markedly reduced in antibiotic-treated humans. One metabolite is elevated during pregnancy, and both are higher in individuals with stage 2 hypertension-range blood pressure. These findings reveal a bacterial route to altered host cortisol signaling and suggest a potential link between microbiome-derived GALFs and blood pressure regulation.

microbiology↗

Alterations in glucocorticoid homeostasis following sleeve gastrectomy

Elevated intra-tissue levels of active glucocorticoids in obese patients are associated with insulin resistance, diabetes, impaired immune regulation, and other adverse effects. Sleeve gastrectomy (SG) induces significant weight loss and improves metabolic outcomes, including insulin resistance and hyperlipidemia. Among the enzymes controlling intracellular concentrations of active glucocorticoids, 11{beta}-hydroxysteroid dehydrogenase type 1 (HSD11B1, SDR26C1) has been extensively studied concerning obesity and post-gastric surgery interventions. However, most studies focused on either a single tissue, circulating glucocorticoid levels, or HSD11B1 activity. In this work, we showed that circulating active/inactive glucocorticoid ratio (corticosterone (B)/11-dehydrocorticosterone (A)) negatively correlated with glucose tolerance; SG in male C57BL/6 mice slightly reduced circulating mineralocorticoids and reversed the elevated ratio of B/A seen in sham-operated mice after high-fat diet, while improving glucose tolerance. This change was likely due to increased renal 11{beta}-hydroxysteroid dehydrogenase type 2 (HSD11B2, SDR9C3) activity after SG. To provide a comprehensive overview of the systemic effects post-surgery, we evaluated enzymes involved in glucocorticoid homeostasis across tissues on mRNA, protein, and activity level. Moreover, mRNA expression of transcription factors CCAAT enhancer binding protein alpha (Cebpa), Cebpb and nuclear factor kappa b (Nf{kappa}b (p50)), as well as cytokines influencing Hsd11b1 and Hsd11b2 gene expression were analyzed. The results emphasize stronger influence of renal HSD11B2 than hepatic HSD11B1 activity on the circulating B/A ratio, supported by intrarenal and intrahepatic B/A ratios. The improved glucocorticoid homeostasis following SG, indicated by decreased B/A ratios, proposes a lower risk for glucocorticoid-mediated adverse health effects, including chronic kidney disease, hypertension, and metabolic disturbances. NEW & NOTEWORTHYThis study revealed improved glucocorticoid homeostasis after sleeve gastrectomy (SG), with lower circulating ratios of active (corticosterone, B)/inactive (11-dehydrocorticosterone, A) glucocorticoids and a better glucose tolerance compared to Sham mice. SG enhanced renal HSD11B2 activity, while hepatic HSD11B1 oxoreductase activity was unchanged. These findings suggest that SG reverses some adverse metabolic effects of high-fat diet by enhancing renal HSD11B2 activity, potentially lowering the risk of chronic kidney disease, hypertension, and metabolic disease.

physiology↗