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Body Composition and Metabolic Caging Analysis in High Fat Fed Mice
Published on: May 24, 2018
Non-Necroptotic Roles of MLKL in Diet-Induced Obesity, Liver Pathology, and Insulin Sensitivity: Insights from a High
Abstract:
Chronic inflammation is a key player in metabolic dysfunction-associated fatty liver disease (MAFLD) progression. Necroptosis, an inflammatory cell death pathway, is elevated in MAFLD patients and mouse models, yet its role is unclear due to diverse mouse models and inhibition strategies. In our study, we inhibited necroptosis by targeting mixed lineage kinase domain like pseudokinase (MLKL), the terminal effector of necroptosis, in a high-fat, high-fructose, high-cholesterol (HFHFrHC) mouse model of diet-induced MAFLD mouse model. Despite HFHFrHC diet upregulating MLKL (2.5-fold), WT mice livers showed no increase in necroptosis markers or associated proinflammatory cytokines. Surprisingly, Mlkl mice experienced exacerbated liver inflammation without protection from diet-induced liver damage, steatosis, or fibrosis. In contrast, Mlkl mice showed significant reduction in these parameters that was associated with elevated Pparα and Pparγ levels. Both Mlkl and Mlkl mice on HFHFrHC diet resisted diet-induced obesity, attributed to increased beiging, enhanced oxygen consumption and energy expenditure due to adipose tissue, and exhibited improved insulin sensitivity. These findings highlight the tissue specific effects of MLKL on the liver and adipose tissue, and suggest a dose-dependent effect of MLKL on liver pathology.
Insights
Targeting mixed lineage kinase domain like pseudokinase (MLKL) impacts liver inflammation and metabolic dysfunction differently in mice. MLKL deficiency exacerbates liver issues, while its absence offers protection and metabolic benefits.
Area of Science:
- Hepatology
- Inflammation
- Metabolic Diseases
Background:
- Chronic inflammation drives metabolic dysfunction-associated fatty liver disease (MAFLD).
- Necroptosis, an inflammatory cell death pathway involving mixed lineage kinase domain like pseudokinase (MLKL), is implicated in MAFLD.
- The precise role of MLKL in MAFLD progression remains unclear due to varied research models and inhibition methods.
Conclusions:
- MLKL exhibits tissue-specific effects, promoting liver inflammation while potentially protecting adipose tissue.
- MLKL deficiency exacerbates MAFLD liver pathology, suggesting a protective role in the liver under specific conditions.
- MLKL absence confers metabolic benefits, including obesity resistance and improved insulin sensitivity, highlighting its complex role in metabolic health.

