Silencing hepatic MCJ attenuates non-alcoholic fatty liver disease (NAFLD) by increasing mitochondrial fatty acid oxidation.
Lucía Barbier-TorresKaren A FortnerPaula IruzubietaTeresa C DelgadoEmily GiddingsYoudinghuan ChenDevin P ChampagneDavid Fernández-RamosDaniela MestreBeatriz Gomez-SantosMarta Varela-ReyVirginia Gutiérrez de JuanPablo Fernández-TussyImanol Zubiete-FrancoCarmelo García-MonzónÁgueda González-RodríguezDhaval OzaFelipe Valença-PereiraQian FangJavier CrespoPatricia AspichuetaFrederic TremblayBrock C ChristensenJuan AnguitaMaría Luz Martínez-ChantarMercedes RincónPublished in: Nature communications (2020)
Nonalcoholic fatty liver disease (NAFLD) is considered the next major health epidemic with an estimated 25% worldwide prevalence. No drugs have yet been approved and NAFLD remains a major unmet need. Here, we identify MCJ (Methylation-Controlled J protein) as a target for non-alcoholic steatohepatitis (NASH), an advanced phase of NAFLD. MCJ is an endogenous negative regulator of the respiratory chain Complex I that acts to restrain mitochondrial respiration. We show that therapeutic targeting of MCJ in the liver with nanoparticle- and GalNAc-formulated siRNA efficiently reduces liver lipid accumulation and fibrosis in multiple NASH mouse models. Decreasing MCJ expression enhances the capacity of hepatocytes to mediate β-oxidation of fatty acids and minimizes lipid accumulation, which results in reduced hepatocyte damage and fibrosis. Moreover, MCJ levels in the liver of NAFLD patients are elevated relative to healthy subjects. Thus, inhibition of MCJ emerges as an alternative approach to treat NAFLD.
Keyphrases
- fatty acid
- oxidative stress
- end stage renal disease
- liver fibrosis
- poor prognosis
- healthcare
- public health
- newly diagnosed
- ejection fraction
- chronic kidney disease
- hydrogen peroxide
- mental health
- dna methylation
- cancer therapy
- binding protein
- peritoneal dialysis
- transcription factor
- patient reported outcomes
- small molecule
- long non coding rna
- genome wide
- nitric oxide
- amino acid
- drug administration