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Hepatol Commun ; 8(7)2024 Jul 01.
Article in English | MEDLINE | ID: mdl-38934719

ABSTRACT

BACKGROUND: MASH is a common clinical disease that can lead to advanced liver conditions, but no approved pharmacotherapies are available due to an incomplete understanding of its pathogenesis. Damaged DNA binding protein 1 (DDB1) participates in lipid metabolism. Nevertheless, the function of DDB1 in MASH is unclear. METHODS: Clinical liver samples were obtained from patients with MASH and control individuals by liver biopsy. Hepatocyte-specific Ddb1-knockout mice and liver Hmgb1 knockdown mice were fed with a methionine-and choline-deficient diet to induce MASH. RESULTS: We found that the expression of DDB1 in the liver was significantly decreased in MASH models. Hepatocyte-specific ablation of DDB1 markedly alleviated methionine-and choline-deficient diet-induced liver steatosis but unexpectedly exacerbated inflammation and fibrosis. Mechanistically, DDB1 deficiency attenuated hepatic steatosis by downregulating the expression of lipid synthesis and uptake genes. We identified high-mobility group box 1 as a key candidate target for DDB1-mediated liver injury. DDB1 deficiency upregulated the expression and extracellular release of high-mobility group box 1, which further increased macrophage infiltration and activated HSCs, ultimately leading to the exacerbation of liver inflammation and fibrosis. CONCLUSIONS: These data demonstrate the independent regulation of hepatic steatosis and injury in MASH. These findings have considerable clinical implications for the development of therapeutic strategies for MASH.


Subject(s)
DNA-Binding Proteins , Fatty Liver , HMGB1 Protein , Hepatocytes , Liver Cirrhosis , Mice, Knockout , Animals , Mice , Hepatocytes/metabolism , Hepatocytes/pathology , Liver Cirrhosis/pathology , Liver Cirrhosis/genetics , Liver Cirrhosis/metabolism , DNA-Binding Proteins/genetics , Humans , HMGB1 Protein/metabolism , HMGB1 Protein/genetics , Fatty Liver/pathology , Fatty Liver/metabolism , Fatty Liver/genetics , Male , Choline Deficiency/complications , Disease Models, Animal , Methionine/deficiency , Liver/pathology , Liver/metabolism , Lipid Metabolism
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