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C/EBPbeta regulation in lipopolysaccharide-stimulated macrophages
Michelle N Bradley1, Liang Zhou, Stephen T Smale
1Howard Hughes Medical Institute and Department of Microbiology, Immunology, and Molecular Genetics, University of California, Los Angeles, California 90095-1662, USA.
Abstract:
C/EBP family members contribute to the induction of the interleukin-12 p40 gene and the genes encoding several other mediators of inflammation. Here, we show by chromatin immunoprecipitation that C/EBPbeta binds the p40 promoter following lipopolysaccharide stimulation of peritoneal macrophages. However, three modes of C/EBPbeta regulation reported in other cell types were not detected, including alternative translation initiation, nuclear translocation, and increased DNA binding following posttranslational modification. In contrast, C/EBPbeta concentrations greatly increased following stimulation via MAP kinase-dependent induction of C/EBPbeta gene transcription. Increased C/EBPbeta concentrations were unimportant for p40 induction, however, as transcription of the p40 gene initiated before C/EBPbeta concentrations increased. Furthermore, disruption of C/EBPbeta upregulation by a MAP kinase inhibitor only slightly diminished p40 induction. Phosphopeptide mapping revealed that endogenous C/EBPbeta in macrophages is phosphorylated on only a single tryptic peptide containing 14 potential phosphoacceptors. This peptide was constitutively phosphorylated in primary and transformed macrophages, in contrast to its inducible phosphorylation in other cell types in response to Ras and growth hormone signaling. Altered-specificity experiments supported the hypothesis that C/EBPbeta activity in macrophages does not require an inducible posttranslational modification. These findings suggest that, although C/EBPbeta contributes to the induction of numerous proinflammatory genes, it is fully active in unstimulated macrophages and poised to stimulate transcription in conjunction with other factors whose activities are induced.
Insights
CCAAT enhancer-binding protein beta (C/EBPbeta) is constitutively active in macrophages, not requiring inducible modifications for function. Its role in inflammation is poised, awaiting other induced factors.
Area of Science:
- Immunology
- Molecular Biology
- Cellular Biology
Background:
- C/EBP family members regulate inflammatory gene induction, including interleukin-12 p40.
- Previous studies indicated multiple regulatory mechanisms for C/EBPbeta in various cell types.
Purpose of the Study:
- To investigate the regulation and activity of C/EBPbeta in lipopolysaccharide-stimulated macrophages.
- To determine the role of C/EBPbeta posttranslational modifications and concentration changes in inflammatory gene induction.
Main Methods:
- Chromatin immunoprecipitation to assess C/EBPbeta promoter binding.
- MAP kinase pathway inhibition to study C/EBPbeta upregulation.
- Phosphopeptide mapping to analyze C/EBPbeta phosphorylation status.
Main Results:
- C/EBPbeta binds the p40 promoter upon stimulation but its concentration increase is not essential for p40 induction.
- MAP kinase-dependent C/EBPbeta gene transcription increases C/EBPbeta levels, but this upregulation has minimal impact on p40 induction.
- Endogenous C/EBPbeta in macrophages is constitutively phosphorylated, unlike inducible phosphorylation in other cell types.
Conclusions:
- C/EBPbeta activity in macrophages does not rely on inducible posttranslational modifications.
- C/EBPbeta is constitutively active in unstimulated macrophages, ready to participate in inflammatory responses.
- Its function is poised to cooperate with other induced factors for proinflammatory gene transcription.