4.8 Article

Up-regulation of miR-34b/c by JNK and FOXO3 protects from liver fibrosis

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.2025242118

关键词

liver fibrosis; JNK; FOXO3; miR-34b/c; alpha 1 antitrypsin deficiency

资金

  1. University of Massachusetts Medical School Center for Clinical and Translational Science (UMCCTS Grant) [UL1TR001453]
  2. Alpha-1 Foundation
  3. Federico II University of Naples (STAR Program)
  4. Prof. Mario Coppo Fellowship Award
  5. Alpha-1 Antitrypsin Laurell's Training Award

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AAT deficiency is caused by pathogenic variants in the SERPINA1 gene, with the Z allele encoding for Z alpha 1-antitrypsin leading to hepatotoxic polymers. The up-regulation of miR-34b/c in PiZ mouse livers is correlated to intrahepatic ATZ, and its expression is dependent on JNK phosphorylation on Ser574. Deletion of miR-34b/c in PiZ mice results in early liver fibrosis and increased signaling of platelet-derived growth factor.
alpha 1-Antitrypsin (AAT) deficiency is a common genetic disease presenting with lung and liver diseases. AAT deficiency results from pathogenic variants in the SERPINA1 gene encoding AAT and the common mutant Z allele of SERPINA1 encodes for Z alpha 1-antitrypsin (ATZ), a protein forming hepatotoxic polymers retained in the endoplasmic reticulum of hepatocytes. PiZ mice express the human ATZ and are a valuable model to investigate the human liver disease of AAT deficiency. In this study, we investigated differential expression of microRNAs (miRNAs) between PiZ and control mice and found that miR-34b/c was up-regulated and its levels correlated with intrahepatic ATZ. Furthermore, in PiZ mouse livers, we found that Forkhead Box O3 (FOXO3) driving microRNA-34b/c (miR-34b/c) expression was activated and miR-34b/c expression was dependent upon c-Jun N-terminal kinase (JNK) phosphorylation on Ser574. Deletion of miR-34b/c in PiZ mice resulted in early development of liver fibrosis and increased signaling of platelet-derived growth factor (PDGF), a target of miR-34b/c. Activation of FOXO3 and increased miR-34c were confirmed in livers of humans with AAT deficiency. In addition, JNK-activated FOXO3 and miR-34b/c up-regulation were detected in several mouse models of liver fibrosis. This study reveals a pathway involved in liver fibrosis and potentially implicated in both genetic and acquired causes of hepatic fibrosis.

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