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Hepatocyte Mettl3 Deficiency Drives Primary Sclerosing Cholangitis and Liver Fibrosis via Cholangiocyte-Macrophage
Wenting Pan1,2, Yuting Yong1,2, Yuanshuai Li1,2
1Beijing Key Laboratory of Environmental and Viral Oncology, College of Chemistry and Life Science, Beijing University of Technology, Beijing, China.
Abstract:
Effective therapies for primary sclerosing cholangitis (PSC), a progressive cholestatic liver disease characterized by biliary inflammation and fibrotic damage, remain limited due to an incomplete elucidation of its underlying molecular mechanisms. Although N6-methyladenosine (m6A) RNA methylation has been implicated in hepatic pathophysiology, its role in PSC remains undefined. Here, we demonstrate that hepatocyte-specific deletion of Mettl3, a critical m6A methyltransferase, induces spontaneous PSC-like pathology characterized by ductular reaction and peribiliary fibrosis. Therapeutic restoration of Mettl3 through genetic knock-in or AAV8-mediated hepatocyte-specific overexpression significantly attenuated 3,5-diethoxycarbonyl-1,4-dihydrocollidine (DDC)-induced PSC progression. Integrated single-cell and bulk transcriptomic profiles revealed an expansion of Trem2+ macrophages that interact with Spp1high cholangiocytes via the Cd44-Spp1 axis. Genetic ablation of Trem2 or cholangiocyte-specific deletion of Spp1 significantly suppressed DDC-induced biliary injury. Mechanistically, Mettl3-deficient hepatocytes secreted higher levels of macrophage-recruiting cytokines (such as Mif and Csf1), facilitating the recruitment of Trem2+ macrophage, which subsequently activated cholangiocytes through Cd44-Spp1 signaling, exacerbated biliary inflammation and fibrosis. Notably, pharmacological activation of Mettl3 in adult hepatocytes substantially mitigated PSC progression and liver fibrosis. Collectively, our findings establish hepatocyte Mettl3 deficiency as a pivotal driver of PSC pathogenesis and highlight the therapeutic potential of targeting the m6A epitranscriptome in cholestatic liver diseases.
Insights
Hepatocyte Mettl3 deficiency drives primary sclerosing cholangitis (PSC) by recruiting macrophages that activate cholangiocytes. Restoring Mettl3 or targeting this pathway may treat PSC and liver fibrosis.
Area of Science:
- Hepatology
- Molecular Biology
- Immunology
Background:
- Primary sclerosing cholangitis (PSC) is a progressive cholestatic liver disease with limited therapies.
- The role of N6-methyladenosine (m6A) RNA methylation in PSC pathogenesis is unknown.
Purpose of the Study:
- To investigate the role of Mettl3-mediated m6A RNA methylation in PSC.
- To explore therapeutic strategies targeting the m6A epitranscriptome for PSC.
Main Methods:
- Generated hepatocyte-specific Mettl3 knockout mice.
- Utilized genetic restoration and AAV8-mediated overexpression of Mettl3.
- Employed transcriptomic profiling and targeted genetic ablation (Trem2, Spp1).
- Investigated macrophage-cholangiocyte interactions via the Cd44-Spp1 axis.
Main Results:
- Hepatocyte Mettl3 deficiency induced PSC-like pathology.
- Mettl3 restoration attenuated DDC-induced PSC progression.
- Trem2+ macrophages and Spp1+ cholangiocytes, interacting via Cd44-Spp1, were crucial in biliary injury.
- Mettl3 deficiency promoted pro-inflammatory cytokine secretion, enhancing macrophage recruitment and cholangiocyte activation.
Conclusions:
- Hepatocyte Mettl3 deficiency is a key driver of PSC pathogenesis.
- Targeting the m6A epitranscriptome, particularly Mettl3, offers a promising therapeutic avenue for PSC and liver fibrosis.
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