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Published on: November 7, 2020
Immune Regulation of the Liver Through the PCSK9/CD36 Pathway During Heart Transplant Rejection
Xi Zhang1,2, Heng Xu1, Jizhang Yu1,2
1Department of Cardiovascular Surgery (X.Z., H.X., J.Y., J.C., Z.C., Y.L., Y.N., S.W., S.R., Y.Z., J.W., J.X.), Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Background:
PCSK9 (proprotein convertase subtilisin/kexin 9), which is mainly secreted by the liver, is not only a therapeutic target for hyperlipidemia and cardiovascular disease, but also has been implicated in the immune regulation of infections and tumors. However, the role of PCSK9 and the liver in heart transplant rejection (HTR) and the underlying mechanisms remain unclear.
Methods:
We assessed serum PCSK9 expression in both murine and human recipients during HTR and investigated the effect of PCSK9 ablation on HTR by using global knockout mice and a neutralizing antibody. Moreover, we performed multiorgan histological and transcriptome analyses, and multiomics and single-cell RNA-sequencing studies of the liver during HTR, as well. We further used hepatocyte-specific Pcsk9 knockout mice to investigate whether the liver regulated HTR through PCSK9. Last, we explored the regulatory effect of the PCSK9/CD36 pathway on the phenotype and function of macrophages in vitro and in vivo.
Results:
Here, we report that murine and human recipients have high serum PCSK9 levels during HTR. PCSK9 ablation prolonged cardiac allograft survival and attenuated the infiltration of inflammatory cells in the graft and the expansion of alloreactive T cells in the spleen. Next, we demonstrated that PCSK9 was mainly produced and significantly upregulated in the recipient liver, which also showed a series of signaling changes, including changes in the TNF-α (tumor necrosis factor α) and IFN-γ (interferon γ) signaling pathways and the bile acid and fatty acid metabolism pathways. We found mechanistically that TNF-α and IFN-γ synergistically promoted PCSK9 expression in hepatocytes through the transcription factor SREBP2 (sterol regulatory element binding protein 2). Moreover, in vitro and in vivo studies indicated that PCSK9 inhibited CD36 expression and fatty acid uptake by macrophages and strengthened the proinflammatory phenotype, which facilitated their ability to promote proliferation and IFN-γ production by donor-reactive T cells. Last, we found that the protective effect of PCSK9 ablation against HTR is dependent on the CD36 pathway in the recipient.
Conclusions:
This study reveals a novel mechanism for immune regulation by the liver through the PCSK9/CD36 pathway during HTR, which influences the phenotype and function of macrophages and suggests that the modulation of this pathway may be a potential therapeutic target to prevent HTR.
Insights
High PCSK9 levels during heart transplant rejection (HTR) promote inflammation. Blocking PCSK9 (proprotein convertase subtilisin/kexin 9) with CD36 pathway modulation may prevent HTR by regulating macrophage function.
Area of Science:
- Immunology
- Hepatology
- Cardiovascular Science
Background:
- Proprotein convertase subtilisin/kexin 9 (PCSK9) is a liver-secreted protein targeted for hyperlipidemia and cardiovascular disease.
- PCSK9's role in immune regulation is known, but its involvement in heart transplant rejection (HTR) remains unclear.
Purpose of the Study:
- To investigate the role of PCSK9 and the liver in HTR.
- To elucidate the underlying mechanisms of PCSK9-mediated immune regulation in HTR.
Main Methods:
- Assessed serum PCSK9 levels in murine and human HTR models.
- Utilized PCSK9 knockout mice and neutralizing antibodies to study PCSK9 ablation effects.
- Conducted multi-organ histological, transcriptome, multiomics, and single-cell RNA-sequencing analyses.
- Investigated the PCSK9/CD36 pathway's effect on macrophage phenotype and function.
Main Results:
- Elevated serum PCSK9 levels were observed during HTR in both murine and human recipients.
- PCSK9 ablation prolonged cardiac allograft survival and reduced inflammatory cell infiltration.
- The liver was identified as a primary source of upregulated PCSK9 during HTR, influenced by TNF-α and IFN-γ.
- PCSK9 inhibited macrophage CD36 expression and promoted a pro-inflammatory phenotype, enhancing T cell responses.
Conclusions:
- The liver regulates HTR via the PCSK9/CD36 pathway, impacting macrophage function.
- Targeting the PCSK9/CD36 pathway presents a potential therapeutic strategy for preventing HTR.
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