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Updated: Jun 13, 2025

The Murine Choline-Deficient, Ethionine-Supplemented CDE Diet Model of Chronic Liver Injury
Published on: October 21, 2017
Hepatocyte MMP14 mediates liver and inter-organ inflammatory responses to diet-induced liver injury
Shannon C Kelly1, Cassandra B Higgins1, Jiameng Sun1
1Department of Pediatrics, Washington University School of Medicine, St. Louis, MO 63110, USA.
Abstract:
The matrix metalloproteinase MMP14 is a ubiquitously expressed, membrane-bound, secreted endopeptidase that proteolyzes substrates to regulate development, signaling, and metabolism. However, the spatial and contextual events inciting MMP14 activation and its metabolic sequelae are not fully understood. Here, we introduce an inducible, hepatocyte-specific MMP14-deficient model (MMP14LKO mice) to elucidate cell-intrinsic and systemic MMP14 function. We show that hepatocyte MMP14 mediates diet-induced body weight gain, peripheral adiposity, and impaired glucose homeostasis and drives diet-induced liver triglyceride accumulation and induction of hepatic inflammatory and fibrotic gene expression. Single-nucleus RNA sequencing revealed that hepatocyte MMP14 mediates Kupffer cell and T-cell accumulation and promotes diet-induced hepatocellular subpopulation shifts toward protection against lipid absorption. MMP14 co-immunoprecipitation and proteomic analyses revealed MMP14 substrate binding across both inflammatory and cytokine signaling, as well as metabolic pathways. Strikingly, hepatocyte MMP14 loss-of-function suppressed skeletal muscle and adipose inflammation in vivo, and in a reductionist adipose-hepatocyte co-culture model. Finally, we reveal that trehalose-type glucose transporter inhibitors decrease hepatocyte MMP14 gene expression and nominate these inhibitors as translatable therapeutic metabolic agents. We conclude that hepatocyte MMP14 drives liver and inter-organ inflammatory and metabolic sequelae of obesogenic dietary insult. Modulating MMP14 activation and blockade thus represents a targetable node in the pathogenesis of hepatic inflammation.
Insights
Hepatocyte MMP14 (matrix metalloproteinase 14) drives obesity-related liver inflammation and metabolic dysfunction. Inhibiting MMP14 may offer a therapeutic strategy for metabolic diseases.
Area of Science:
- Molecular biology
- Metabolic disease research
- Hepatology
Background:
- Matrix metalloproteinase MMP14 is an enzyme involved in development, signaling, and metabolism.
- The precise role of MMP14 in metabolic diseases, particularly in the liver, remains unclear.
Purpose of the Study:
- To investigate the cell-intrinsic and systemic functions of MMP14 in hepatocytes.
- To elucidate the role of hepatocyte MMP14 in diet-induced metabolic disturbances and liver inflammation.
Main Methods:
- Development of an inducible, hepatocyte-specific MMP14-deficient mouse model (MMP14LKO).
- Diet-induced obesity models, single-nucleus RNA sequencing, co-immunoprecipitation, and proteomic analyses.
- Adipose-hepatocyte co-culture models and in vivo studies.
Main Results:
- Hepatocyte MMP14 deficiency ameliorated diet-induced weight gain, adiposity, glucose intolerance, and liver triglyceride accumulation.
- MMP14 loss-of-function reduced hepatic inflammation and fibrosis, and suppressed inflammation in adipose and skeletal muscle tissues.
- Single-nucleus RNA sequencing revealed MMP14's role in Kupffer cell and T-cell accumulation and hepatocellular subpopulation shifts.
Conclusions:
- Hepatocyte MMP14 is a key mediator of liver and inter-organ inflammation and metabolic dysfunction in response to obesogenic diets.
- Trehalose-type glucose transporter inhibitors reduced hepatocyte MMP14 expression, suggesting their therapeutic potential.
- Targeting MMP14 activation presents a promising therapeutic strategy for hepatic inflammation and metabolic diseases.
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