Epigenetic mechanisms and metabolic reprogramming in fibrogenesis: dual targeting of G9a and DNMT1 for the inhibition of liver fibrosis

Author:

Barcena-Varela MarinaORCID,Paish Hannah,Alvarez Laura,Uriarte Iker,Latasa Maria U,Santamaria Eva,Recalde Miriam,Garate Maria,Claveria Alex,Colyn Leticia,Arechederra MariaORCID,Iraburu Maria J,Milkiewicz Malgorzata,Milkiewicz Piotr,Sangro Bruno,Robinson Stuart M,French Jeremy,Pardo-Saganta Ana,Oyarzabal Julen,Prosper Felipe,Rombouts Krista,Oakley Fiona,Mann Jelena,Berasain CarmenORCID,Avila Matias AORCID,G Fernandez-Barrena MaiteORCID

Abstract

ObjectiveHepatic stellate cells (HSC) transdifferentiation into myofibroblasts is central to fibrogenesis. Epigenetic mechanisms, including histone and DNA methylation, play a key role in this process. Concerted action between histone and DNA-mehyltransferases like G9a and DNMT1 is a common theme in gene expression regulation. We aimed to study the efficacy of CM272, a first-in-class dual and reversible G9a/DNMT1 inhibitor, in halting fibrogenesis.DesignG9a and DNMT1 were analysed in cirrhotic human livers, mouse models of liver fibrosis and cultured mouse HSC. G9a and DNMT1 expression was knocked down or inhibited with CM272 in human HSC (hHSC), and transcriptomic responses to transforming growth factor-β1 (TGFβ1) were examined. Glycolytic metabolism and mitochondrial function were analysed with Seahorse-XF technology. Gene expression regulation was analysed by chromatin immunoprecipitation and methylation-specific PCR. Antifibrogenic activity and safety of CM272 were studied in mouse chronic CCl4 administration and bile duct ligation (BDL), and in human precision-cut liver slices (PCLSs) in a new bioreactor technology.ResultsG9a and DNMT1 were detected in stromal cells in areas of active fibrosis in human and mouse livers. G9a and DNMT1 expression was induced during mouse HSC activation, and TGFβ1 triggered their chromatin recruitment in hHSC. G9a/DNMT1 knockdown and CM272 inhibited TGFβ1 fibrogenic responses in hHSC. TGFβ1-mediated profibrogenic metabolic reprogramming was abrogated by CM272, which restored gluconeogenic gene expression and mitochondrial function through on-target epigenetic effects. CM272 inhibited fibrogenesis in mice and PCLSs without toxicity.ConclusionsDual G9a/DNMT1 inhibition by compounds like CM272 may be a novel therapeutic strategy for treating liver fibrosis.

Funder

Fundación Científica Asociación Española Contra el Cáncer

Instituto de Salud Carlos III

Medical Research Council

National Institute on Alcohol Abuse and Alcoholism

Gobierno de Navarra

Ministerio de Ciencia, Innovación y Universidades

CIBERehd

Ministerio de Ciencia e Innovación

Fundacion La Caixa

Bio Eusko Fundazioa

Publisher

BMJ

Subject

Gastroenterology

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