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Repression of interleukin-2 and interleukin-4 promoters by tumor suppressor protein p53
Abstract:
Interleukin 2 (IL-2) and interleukin 4 (IL-4) secreted by activated but not by resting mature T cells are pleiotropic cytokines affecting growth and differentiation of diverse cell types, such as T cells, B cells, and mast cells. There is little information about the molecular basis for the constitutive repression of IL-2 and IL-4 gene expression in unstimulated T cells. We investigated the possibility that wild-type (wt) p53, a nuclear tumor suppressor protein, might serve to repress IL-2 and IL-4 gene expression in murine E14 T lymphoma and in human Jurkat cells. We transiently cotransfected these cells with constitutive simian virus 40 (SV 40) early promoter expression plasmids overproducing wt or mutant murine p53 and with appropriate luciferase (luc) reporter plasmids containing the promoter elements of murine IL-2 and IL-4 genes to evaluate the effect of various p53 species on these promoters. Murine wt p53 derived from pSG5p53cD strongly repressed the IL-2 and IL-4 promoters in both cell lines induced by the phorbol ester TPA and the Ca2+ ionophore ionomycin but not, however, in uninduced cells. In similar transient transfection experiments with lymphoma cells, overexpression of deletion mutant species of murine p53 revealed that the N-terminal and C-terminal domains are crucial for inhibition of both IL-2 and IL-4 gene expression. These parts of p53 comprise the transactivation domain at the amino terminal side, which has previously also been shown to interact with the TATA-box binding-protein TBP and the carboxy-terminal oligomerization domain. Additionally, it was shown that a previously described inhibitory protein, the high-mobility-group protein HMG-I/Y, does not functionally interact with p53. Cotransfection of expression plasmids for both p53 and HMG-I/Y did not alter the extent of inhibition by the individual proteins. These data suggest that p53 can downmodulate both IL-2 and IL-4 gene expression and that both the transactivation and oligomerization domains of the tumor suppressor protein are essential for this transcriptional repression.
Insights
Wild-type p53 protein represses interleukin-2 (IL-2) and interleukin-4 (IL-4) gene expression in T cells. Both the transactivation and oligomerization domains of p53 are essential for this transcriptional repression.
Area of Science:
- Molecular Biology
- Immunology
- Cancer Research
Background:
- Interleukin-2 (IL-2) and Interleukin-4 (IL-4) are crucial cytokines for T cell function.
- The molecular mechanisms repressing IL-2 and IL-4 gene expression in unstimulated T cells are not well understood.
- Wild-type p53 (wt p53) is a tumor suppressor protein involved in various cellular processes.
Purpose of the Study:
- To investigate if wild-type p53 (wt p53) can repress IL-2 and IL-4 gene expression in T cells.
- To identify the domains of p53 critical for this repression.
- To explore potential interactions between p53 and HMG-I/Y in regulating IL-2 and IL-4 expression.
Main Methods:
- Transient co-transfection assays in murine E14 T lymphoma and human Jurkat cells.
- Expression plasmids for wt p53, mutant p53 species, and luciferase reporter plasmids containing IL-2 and IL-4 promoter elements.
- Evaluation of p53's effect on IL-2 and IL-4 promoter activity induced by TPA and ionomycin.
Main Results:
- Murine wt p53 strongly repressed IL-2 and IL-4 promoters in induced T cells.
- The N-terminal transactivation and C-terminal oligomerization domains of p53 were essential for repression.
- High-mobility-group protein HMG-I/Y did not functionally interact with p53 to alter IL-2/IL-4 repression.
Conclusions:
- p53 plays a role in downmodulating IL-2 and IL-4 gene expression.
- Both the transactivation and oligomerization domains of p53 are critical for transcriptional repression of these cytokines.
- p53-mediated repression of IL-2 and IL-4 is independent of HMG-I/Y interaction.