Abstract

Nitric oxide (NO) may regulate gene expression by directly modifying redox state-sensitive residues of transcription factors. Here we show that the NO donor, sodium nitroprusside (SNP), rapidly represses c-myc gene transcription in a protein synthesis-independent manner in P19 embryonal carcinoma cells by inactivation of NF-kappa B. SNP treatment reduces the DNA binding ability of the constitutively active NF-kappa B heterodimer, p65/p50, and its consequent transactivation of the c-myc promoter. Repression can be blocked by the peroxynitrite scavenger, deferoxamine, but not by dithiothreitol, which triggers reduction of S-nitrosylated residues. In HEK293 cells, where tumor necrosis factor-alpha can activate NF-kappa B, SNP likewise suppresses the binding of the active NF-kappa B complex, restoring the binding of the repressive p50/p50 homodimer complex. This effect of SNP in HEK293 cells is also blocked by deferoxamine. Chromatin immunoprecipitation analysis of SNP-treated P19 cells reveals reduced association of p65, but not of p50, with the promoter region of the endogenous c-myc gene. SNP-induced p65 dissociation was associated with the recruitment of histone deacetylase 1 and 2 to the endogenous c-myc gene promoter and the subsequent deacetylation of its chromatin histone. This study is the first to demonstrate that NO modulates the transcriptional activity of the c-myc gene promoter by dissociating the active form of NF-kappa B and replacing it with a repressive NF-kappa B complex, correlated with the recruitment of gene-silencing histone deacetylases. In light of findings that NF-kappa B stimulates Myc oncoprotein expression in cancers, our findings suggest that NO should be investigated as a prospective therapeutic cancer agent.

Highlights

  • C-Myc is a transcription factor of the basic helix-loop-helix leucine zipper family

  • Chromatin Immunoprecipitation (ChIP) Assays—P19 cells were treated with sodium nitroprusside (SNP) or SNP plus DFO for 6 h, followed by cross-linking with 1% formaldehyde

  • Transcriptional Repression of c-myc Gene by Nitric oxide (NO)—We have previously shown that several NO donors suppressed kappa opioid receptor (KOR) gene expression in P19 cells through repressing c-Myc protein expression and its binding to the KOR promoter [10]

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Summary

Introduction

C-Myc is a transcription factor of the basic helix-loop-helix leucine zipper family. It forms a heterodimer with Max on the E-box of target gene promoters to activate transcription. This study demonstrated, for the first time, that NO modulates the transcription of the c-myc gene by inducing the dissociation of p65/p50 NF-␬B from the c-myc promoter region and the recruitment of the repressive p50 homodimer complex, in correlation with increased recruitment of HDACs and decreased histone acetylation on the endogenous c-myc promoter.

Results
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