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Macrophage miR-4524a-5p/TBP promotes β-TrCP -TIM3 complex activation and TGFβ release and aggravates NAFLD-associated
Chunming Li1,2, Lei Fang1, Xingxing Su1
1Key Laboratory of Hepatobiliary and Pancreatic Surgery, Institute of Hepatobiliary Surgery, Southwest Hospital, Third Military Medical University (Army Medical University), Chongqing, China.
Abstract:
Macrophages hold a critical position in maintenance of hepatic homeostasis and in injury and repair processes in acute and chronic liver diseases. TIM3 is a promising protector in MCD-induced steatohepatitis in acute liver injury. However, we recently find TIM3 as a driver of fibrosis in MCD/HFD-induced chronic liver injury. This study aims to explore how macrophage TIM3 drivers NAFLD-associated chronic liver injury as well as identify a subtype of fibrotic patients suitable for anti-TIM3 immunotherapy. Here, we found that TIM3 was highly expressed in liver macrophages in a long-term MCD- or HFD-fed mice with fibrotic NASH. Elevated β-TrCP in macrophages promoted TIM3 polyubiquitination and membrane translocation. The ubiquitinated TIM3 then bound with PI3K and followed by inhibition of mTOR and activation of macrophage M2 polarization and TGF-β release, leading to HSC activation and liver fibrosis. Furthermore, elevated TIM3 was attributed to the transcriptional TBP upregulation and miR-4524a-5p downregulation. Targeting of TIM3 significantly attenuated liver fibrosis in mice. In clinical NASH patients, elevated macrophage TIM3 is positively correlated with TBP expression and negatively associated with miR-4524a-5p. Decreased miR-4524a-5p in plasma was a biomarker for the NASH fibrosis patients suitable for anti-TIM3 therapy. In conclusion, this study reveals that miR-4524a-5p/TBP promotes β-TrCP/TIM3 complex activation in macrophages and aggravates chronic NASH fibrosis, providing miR-4524a-5p as an effective blood biomarker for a subtype of chronic NASH patients with fibrosis suitable for anti-TIM3 treatment.
Insights
TIM3 drives liver fibrosis in non-alcoholic steatohepatitis (NASH) by activating macrophages. Targeting TIM3 and using miR-4524a-5p as a biomarker may treat fibrotic NASH patients.
Area of Science:
- Hepatology
- Immunology
- Molecular Biology
Background:
- Macrophages are key in liver homeostasis and disease.
- TIM3 (T-cell immunoglobulin and mucin-domain containing-3) shows dual roles in acute vs. chronic liver injury.
- TIM3 acts as a fibrosis driver in chronic liver injury models.
Purpose of the Study:
- Investigate macrophage TIM3's role in non-alcoholic fatty liver disease (NAFLD)-associated chronic liver injury.
- Identify patient subtypes for anti-TIM3 immunotherapy.
Main Methods:
- Utilized long-term methionine-choline deficient (MCD) or high-fat diet (HFD) mouse models of NASH.
- Analyzed macrophage TIM3 expression, ubiquitination, and downstream signaling pathways (PI3K/mTOR).
- Assessed the roles of TBP (TATA-box binding protein) and miR-4524a-5p in regulating TIM3.
- Correlated findings with clinical NASH patient data.
Main Results:
- TIM3 was highly expressed in liver macrophages of fibrotic NASH mice.
- Elevated β-TrCP promoted TIM3 translocation, leading to M2 polarization, TGF-β release, HSC activation, and fibrosis.
- TIM3 upregulation was linked to TBP increase and miR-4524a-5p decrease.
- TIM3 targeting reduced liver fibrosis in mice.
- Clinical NASH patients showed elevated macrophage TIM3 correlated with TBP and inversely with miR-4524a-5p.
Conclusions:
- The miR-4524a-5p/TBP axis promotes macrophage β-TrCP/TIM3 activation, worsening chronic NASH fibrosis.
- Decreased plasma miR-4524a-5p serves as a biomarker for NASH fibrosis patients suitable for anti-TIM3 therapy.
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