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Updated: Jan 31, 2026

A Neonatal Imaging Model of Gram-Negative Bacterial Sepsis
Published on: August 12, 2020
Dysregulation of Lipid Metabolism in Mkp-1 Deficient Mice during Gram-Negative Sepsis
Jinhui Li1, Xiantao Wang2, William E Ackerman3
1Center for Perinatal Research, The Research Institute at Nationwide Children's Hospital, Columbus, OH 43215, USA. jinhui.liu@nationwidechildrens.org.
Abstract:
Mitogen-activated protein kinase phosphatase (Mkp)-1 exerts its anti-inflammatory activities during Gram-negative sepsis by deactivating p38 and c-Jun N-terminal kinase (JNK). We have previously shown that Mkp-1+/+ mice, but not Mkp-1-/- mice, exhibit hypertriglyceridemia during severe sepsis. However, the regulation of hepatic lipid stores and the underlying mechanism of lipid dysregulation during sepsis remains an enigma. To understand the molecular mechanism underlying the sepsis-associated metabolic changes and the role of Mkp-1 in the process, we infected Mkp-1+/+ and Mkp-1-/- mice with Escherichia coli i.v., and assessed the effects of Mkp-1 deficiency on tissue lipid contents. We also examined the global gene expression profile in the livers via RNA-seq. We found that in the absence of E. coli infection, Mkp-1 deficiency decreased liver triglyceride levels. Upon E. coli infection, Mkp-1+/+ mice, but not Mkp-1-/- mice, developed hepatocyte ballooning and increased lipid deposition in the livers. E. coli infection caused profound changes in the gene expression profile of a large number of proteins that regulate lipid metabolism in wildtype mice, while these changes were substantially disrupted in Mkp-1-/- mice. Interestingly, in Mkp-1+/+ mice E. coli infection resulted in downregulation of genes that facilitate fatty acid synthesis but upregulation of Cd36 and Dgat2, whose protein products mediate fatty acid uptake and triglyceride synthesis, respectively. Taken together, our studies indicate that sepsis leads to a substantial change in triglyceride metabolic gene expression programs and Mkp-1 plays an important role in this process.
Insights
Mitogen-activated protein kinase phosphatase (Mkp)-1 deficiency alters liver lipid metabolism during sepsis. Mkp-1 is crucial for regulating triglyceride levels and gene expression changes in the liver during Gram-negative bacterial infection.
Area of Science:
- Biochemistry
- Molecular Biology
- Immunology
Background:
- Mitogen-activated protein kinase phosphatase (Mkp)-1 deactivates p38 and c-Jun N-terminal kinase (JNK), mediating anti-inflammatory effects during Gram-negative sepsis.
- Previous studies showed Mkp-1 deficiency prevents hypertriglyceridemia in sepsis, but the mechanisms of hepatic lipid dysregulation remain unclear.
Purpose of the Study:
- To investigate the role of Mkp-1 in sepsis-associated metabolic changes, specifically focusing on hepatic lipid regulation.
- To elucidate the molecular mechanisms underlying lipid dysregulation during sepsis in the context of Mkp-1 deficiency.
Main Methods:
- Infection of wildtype (Mkp-1+/+) and knockout (Mkp-1-/-) mice with Escherichia coli.
- Assessment of tissue lipid content and liver triglyceride levels.
- RNA sequencing (RNA-seq) analysis of liver global gene expression profiles.
Main Results:
- Mkp-1 deficiency reduced liver triglyceride levels in uninfected mice.
- E. coli infection led to hepatocyte ballooning and increased lipid deposition in Mkp-1+/+ mice, but not in Mkp-1-/- mice.
- Sepsis induced significant changes in lipid metabolism gene expression in wildtype mice, with disrupted patterns observed in Mkp-1-/- mice. Upregulation of Cd36 and Dgat2 was noted in infected wildtype mice.
Conclusions:
- Sepsis profoundly alters triglyceride metabolic gene expression programs.
- Mkp-1 plays a critical role in modulating hepatic lipid metabolism and gene expression during sepsis.
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