miR‐106b‐5p protects against drug‐induced liver injury by targeting vimentin to stimulate liver regeneration

Author:

Lu Xiaoyan123,Yu Lingqi12,Zheng Jie1,Li Anyao1,Li Junying1,Lou He1,Zhang Wentao4,Guo Hui4,Wang Yuzhen5,Li Xuemei3,Gao Yue36,Fan Xiaohui1237,Borlak Jürgen8

Affiliation:

1. Pharmaceutical Informatics Institute College of Pharmaceutical Sciences Zhejiang University Hangzhou China

2. State Key Laboratory of Chinese Medicine Modernization Innovation Center of Yangtze River Delta Zhejiang University Jiaxing China

3. State Key Laboratory of Component‐Based Chinese Medicine Tianjin University of Traditional Chinese Medicine Tianjin China

4. Department of Hepatobiliary the First Affiliated Hospital of Tianjin University of Traditional Chinese Medicine Tianjin China

5. Department of Pharmacy Sir Run Run Shaw Hospital Zhejiang University School of Medicine Hangzhou China

6. Department of Pharmaceutical Sciences Beijing Institute of Radiation Medicine Beijing China

7. The Joint‐Laboratory of Clinical Multi‐Omics Research Between Zhejiang University and Ningbo Municipal Hospital of TCM Ningbo Municipal Hospital of TCM Ningbo China

8. Centre for Pharmacology and Toxicology Hannover Medical School Hannover Germany

Abstract

AbstractUnderstanding the endogenous mechanism of adaptive response to drug‐induced liver injury (arDILI) may discover innovative strategies to manage DILI. To gain mechanistic insight into arDILI, we investigated exosomal miRNAs in the adaptive response to toosendanin‐induced liver injury (TILI) of mice. Exosomal miR‐106b‐5p was identified as a specific regulator of arDILI by comprehensive miRNA profiling. Outstandingly, miR‐106b‐5p agomir treatment alleviated TILI and other DILI by inhibiting apoptosis and promoting hepatocyte proliferation. Conversely, antagomir treatments had opposite effects, indicating that miR‐106b‐5p protects mice from liver injury. Injured hepatocytes released miR‐106b‐5p‐enriched exosomes taken up by surrounding hepatocytes. Vim (encodes vimentin) was identified as an important target of miR‐106b‐5p by dual luciferase reporter and siRNA assays. Furthermore, single‐cell RNA‐sequencing analysis of toosendanin‐injured mouse liver revealed a cluster of Vim+ hepatocytes; nonetheless declined following miR‐106b‐5p cotreatment. More importantly, Vim knockout protected mice from acetaminophen poisoning and TILI. In the clinic, serum miR‐106b‐5p expression levels correlated with the severity of DILI. Indeed, liver biopsies of clinical cases exposed to different DILI causing drugs revealed marked vimentin expression among harmed hepatocytes, confirming clinical relevance. Together, we report mechanisms of arDILI whereby miR‐106b‐5p safeguards restorative tissue repair by targeting vimentin.

Funder

National Natural Science Foundation of China

Fundamental Research Funds for the Central Universities

Publisher

Wiley

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