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Hyodeoxycholic acid attenuates atherosclerosis by antagonizing FXR and modulating the PD-1/mTORC1 signaling axis
Feng Yang1, Wenqiong Huang2, Zongzhen Meng2
1Department of Cardiology, The First Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, Zhejiang Province, China.
Abstract:
Accumulating evidence suggested that bile acids play a significant role in modulating metabolic and inflammatory diseases. In this study, we investigated the roles of the farnesoid X receptor (FXR) and its endogenous antagonist hyodeoxycholic acid (HDCA) in the development of atherosclerosis (AS). We found that serum HDCA was significantly reduced in patients with AS, and systemic HDCA therapy attenuated plaque burden in vivo. Adoptive transfer of HDCA-treated Foxp3+ Tregs into ApoE-deficient recipients reduced lesion growth, whereas FXR-deficient Tregs failed to confer benefit. HDCA enhanced Treg migration and accumulation within plaques and reprogrammed Treg metabolism by antagonizing FXR and modulating PD-1/mTORC1 signaling. This shift relieved CPT1a-driven fatty acid oxidation bias, increased glycolysis and ATP production, and improved migratory capacity and effector function. We further identify ZNF671 as a transcriptional inhibitor of Treg migration that is mitigated by HDCA-dependent metabolic switching. Collectively, HDCA reduced FXR-mediated metabolic constraints while activating glycolytic and migratory programs in Tregs, thereby improving lipid handling and immune regulation within the plaque microenvironment. These findings position the HDCA-FXR-PD-1/mTORC1 axis as a novel immunometabolic target for AS.
Insights
Hyodeoxycholic acid (HDCA) therapy reduces atherosclerosis by enhancing regulatory T cell (Treg) function. HDCA antagonizes the farnesoid X receptor (FXR), improving Treg metabolism and immune response within plaques.
Area of Science:
- Immunometabolism
- Atherosclerosis research
- Bile acid signaling
Background:
- Bile acids modulate metabolic and inflammatory diseases.
- Farnesoid X receptor (FXR) and hyodeoxycholic acid (HDCA) roles in atherosclerosis (AS) are under investigation.
Purpose of the Study:
- Investigate the roles of FXR and HDCA in AS development.
- Elucidate the mechanisms by which HDCA impacts regulatory T cells (Tregs) in AS.
Main Methods:
- Measured serum HDCA levels in AS patients.
- Administered systemic HDCA therapy in vivo.
- Performed adoptive transfer of HDCA-treated Tregs into ApoE-deficient mice.
- Analyzed Treg migration, metabolism, and signaling pathways (FXR, PD-1/mTORC1, CPT1a).
- Identified ZNF671 as a transcriptional regulator.
Main Results:
- Serum HDCA was reduced in AS patients.
- HDCA therapy attenuated plaque burden and reduced lesion growth in vivo.
- HDCA enhanced Treg migration and accumulation within plaques.
- HDCA reprogrammed Treg metabolism by antagonizing FXR, increasing glycolysis and ATP production.
- HDCA mitigated ZNF671-mediated inhibition of Treg migration.
Conclusions:
- HDCA antagonizes FXR, improving Treg immunometabolism and function in AS.
- The HDCA-FXR-PD-1/mTORC1 axis represents a novel immunometabolic target for AS.
- HDCA enhances lipid handling and immune regulation within atherosclerotic plaques.
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