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C/EBPγ suppresses senescence and inflammatory gene expression by heterodimerizing with C/EBPβ
Christopher J Huggins1, Radek Malik, Sook Lee
1Laboratory of Cancer Prevention, Center for Cancer Research, NCI-Frederick, Frederick, Maryland, USA.
Abstract:
C/EBPβ is an important regulator of oncogene-induced senescence (OIS). Here, we show that C/EBPγ, a heterodimeric partner of C/EBPβ whose biological functions are not well understood, inhibits cellular senescence. Cebpg(-/-) mouse embryonic fibroblasts (MEFs) proliferated poorly, entered senescence prematurely, and expressed a proinflammatory gene signature, including elevated levels of senescence-associated secretory phenotype (SASP) genes whose induction by oncogenic stress requires C/EBPβ. The senescence-suppressing activity of C/EBPγ required its ability to heterodimerize with C/EBPβ. Covalently linked C/EBPβ homodimers (β∼β) inhibited the proliferation and tumorigenicity of Ras(V12)-transformed NIH 3T3 cells, activated SASP gene expression, and recruited the CBP coactivator in a Ras-dependent manner, whereas γ∼β heterodimers lacked these capabilities and efficiently rescued proliferation of Cebpg(-/-) MEFs. C/EBPβ depletion partially restored growth of C/EBPγ-deficient cells, indicating that the increased levels of C/EBPβ homodimers in Cebpg(-/-) MEFs inhibit proliferation. The proliferative functions of C/EBPγ are not restricted to fibroblasts, as hematopoietic progenitors from Cebpg(-/-) bone marrow also displayed impaired growth. Furthermore, high CEBPG expression correlated with poorer clinical prognoses in several human cancers, and C/EBPγ depletion decreased proliferation and induced senescence in lung tumor cells. Our findings demonstrate that C/EBPγ neutralizes the cytostatic activity of C/EBPβ through heterodimerization, which prevents senescence and suppresses basal transcription of SASP genes.
Insights
C/EBPγ protein prevents cellular senescence by partnering with C/EBPβ. Loss of C/EBPγ leads to premature aging and promotes cancer, highlighting its role in cell proliferation and tumor suppression.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- C/EBPβ regulates oncogene-induced senescence (OIS).
- The function of C/EBPγ, a partner of C/EBPβ, is largely unknown.
- Cellular senescence is a key process in aging and tumor suppression.
Purpose of the Study:
- To investigate the role of C/EBPγ in cellular senescence and proliferation.
- To determine the mechanism by which C/EBPγ interacts with C/EBPβ.
- To assess the clinical relevance of C/EBPγ in human cancers.
Main Methods:
- Analysis of C/EBPγ-deficient mouse embryonic fibroblasts (MEFs).
- Assessment of cell proliferation, senescence markers, and gene expression.
- Investigation of C/EBPβ homodimer and C/EBPγ-C/EBPβ heterodimer functions.
- Correlation of CEBPG expression with clinical cancer prognoses.
Main Results:
- C/EBPγ deficiency in MEFs caused impaired proliferation, premature senescence, and elevated pro-inflammatory SASP genes.
- C/EBPγ suppresses senescence by heterodimerizing with C/EBPβ, neutralizing C/EBPβ homodimer activity.
- C/EBPβ homodimers inhibit proliferation and tumorigenicity, while C/EBPγ-C/EBPβ heterodimers do not.
- High CEBPG expression correlates with poor prognosis in human cancers, and C/EBPγ depletion promotes tumor cell proliferation.
Conclusions:
- C/EBPγ acts as a critical suppressor of cellular senescence and a regulator of cell proliferation.
- Heterodimerization of C/EBPγ with C/EBPβ is essential for preventing senescence and suppressing SASP gene transcription.
- C/EBPγ plays a significant role in tumor suppression, and its dysregulation is linked to adverse clinical outcomes in cancer.
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