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Updated: Mar 14, 2026

Author Spotlight: Gut Microbiome-Lung Tissue Communication Through Short-Chain Fatty Acid Analysis
Published on: June 21, 2024
Microbial short chain fatty acid metabolites lower blood pressure via endothelial G protein-coupled receptor 41
Niranjana Natarajan1, Daijiro Hori2, Sheila Flavahan2
1Department of Physiology, Johns Hopkins University, School of Medicine, Baltimore, Maryland; and.
Abstract:
Short chain fatty acid (SCFA) metabolites are byproducts of gut microbial metabolism that are known to affect host physiology via host G protein-coupled receptor (GPCRs). We previously showed that an acute SCFA bolus decreases blood pressure (BP) in anesthetized mice, an effect mediated primarily via Gpr41. In this study, our aims were to identify the cellular localization of Gpr41 and to determine its role in BP regulation. We localized Gpr41 to the vascular endothelium using RT-PCR: Gpr41 is detected in intact vessels (with endothelium) but is absent from denuded vessels (without endothelium). Furthermore, using pressure myography we confirmed that SCFAs dilate resistance vessels in an endothelium-dependent manner. Since we previously found that Gpr41 mediates a hypotensive response to acute SCFA administration, we hypothesized that Gpr41 knockout (KO) mice would be hypertensive. Here, we report that Gpr41 KO mice have isolated systolic hypertension compared with wild-type (WT) mice; diastolic BP was not different between WT and KO. Older Gpr41 KO mice also exhibited elevated pulse wave velocity, consistent with a phenotype of systolic hypertension; however, there was no increase in ex vivo aorta stiffness (measured by mechanical tensile testing). Plasma renin concentrations were also similar in KO and WT mice. The systolic hypertension in Gpr41 KO is not salt sensitive, as it is not significantly altered on either a high- or low-salt diet. In sum, these studies suggest that endothelial Gpr41 lowers baseline BP, likely by decreasing active vascular tone without altering passive characteristics of the blood vessels, and that Gpr41 KO mice have hypertension of a vascular origin.
Insights
Gut microbes produce short-chain fatty acids (SCFAs) that influence blood pressure (BP). Endothelial G protein-coupled receptor 41 (Gpr41) lowers BP, and its absence causes systolic hypertension in mice.
Area of Science:
- Physiology
- Metabolism
- Vascular Biology
Background:
- Gut microbial metabolites, such as short-chain fatty acids (SCFAs), influence host physiology through G protein-coupled receptors (GPCRs).
- Previous research indicated that SCFAs acutely decrease blood pressure (BP) in mice, primarily mediated by G protein-coupled receptor 41 (Gpr41).
Purpose of the Study:
- To determine the cellular localization of Gpr41.
- To elucidate the role of Gpr41 in regulating blood pressure.
Main Methods:
- RT-PCR was used to detect Gpr41 expression in intact and denuded blood vessels.
- Pressure myography assessed the effect of SCFAs on resistance vessel dilation.
- Gpr41 knockout (KO) mice were compared with wild-type (WT) mice to evaluate BP regulation.
Main Results:
- Gpr41 was localized to the vascular endothelium.
- SCFAs induced endothelium-dependent dilation of resistance vessels.
- Gpr41 KO mice exhibited isolated systolic hypertension compared to WT mice, without differences in diastolic BP.
- Elevated pulse wave velocity in older Gpr41 KO mice indicated systolic hypertension, but aorta stiffness and plasma renin concentrations were similar between groups.
- The systolic hypertension in Gpr41 KO mice was not affected by high- or low-salt diets.
Conclusions:
- Endothelial Gpr41 plays a role in lowering baseline blood pressure.
- Gpr41 likely reduces active vascular tone without affecting passive vessel characteristics.
- Gpr41 knockout mice develop hypertension of vascular origin.
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