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Up-regulation of inducible nitric oxide synthase expression in cancer-prone p53 knockout mice
S Ambs1, M O Ogunfusika, W G Merriam
1Laboratory of Human Carcinogenesis, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Abstract:
High concentrations of nitric oxide (NO) cause DNA damage and apoptosis in many cell types. Thus, regulation of NO synthase (NOS) activity is essential for minimizing effects of cytotoxic and genotoxic nitrogen oxide species. We have shown previously that NO-induced p53 protein accumulation down-regulates basal and cytokine-modulated inducible NOS (NOS2) expression in human cells in vitro. To further characterize the feedback loop between NOS2 and p53, we have investigated NO production, i.e., urinary nitrate plus nitrite excretion, and NOS2 expression in homozygous p53 knockout (KO) mice. We report here that untreated p53 KO mice excreted 70% more nitrite plus nitrate than mice with wild-type (wt) p53. NOS2 protein expression was constitutively detected in the spleen of untreated p53 KO mice, whereas it was undetectable in the spleen of wt p53 controls. Upon treatment with heat-inactivated Corynebacterium parvum, urinary nitrite plus nitrate excretion of p53 KO mice exceeded that of wt controls by approximately 200%. C. parvum treatment also induced p53 accumulation in the liver. Splenectomy reduced the NO output of C. parvum-treated p53 KO mice but not of wt p53 controls. Although NO production and NOS2 protein expression were increased similarly in KO and wt p53 mice 10 days after injection of C. parvum, NOS2 expression returned to baseline levels only in wt p53 controls while remaining up-regulated in p53 KO mice. These genetic and functional data indicate that p53 is an important transrepressor of NOS2 expression in vivo and attenuates excessive NO production in a regulatory negative feedback loop.
Insights
The tumor suppressor p53 normally limits nitric oxide (NO) production by regulating inducible NO synthase (NOS2). Without p53, mice show elevated NO levels and sustained NOS2 expression, indicating p53
Area of Science:
- Molecular Biology
- Immunology
- Genetics
Background:
- High nitric oxide (NO) concentrations can damage DNA and induce apoptosis.
- Regulation of NO synthase (NOS) activity is crucial for managing cytotoxic nitrogen oxide species.
- Previous studies showed NO-induced p53 accumulation down-regulates inducible NOS (NOS2) expression in human cells.
Purpose of the Study:
- To investigate the feedback loop between NOS2 and p53 in vivo.
- To characterize NO production and NOS2 expression in p53 knockout (KO) mice.
Main Methods:
- Measurement of urinary nitrate plus nitrite excretion in p53 KO and wild-type (wt) mice.
- Assessment of NOS2 protein expression in spleen and liver.
- Evaluation of NO production and NOS2 expression following Corynebacterium parvum (C. parvum) treatment and splenectomy.
Main Results:
- Untreated p53 KO mice exhibited significantly higher urinary nitrite/nitrate excretion and constitutive splenic NOS2 expression compared to wt mice.
- C. parvum treatment led to a greater increase in NO production in p53 KO mice.
- While both KO and wt mice showed similar NOS2 induction post-C. parvum, only wt mice returned to baseline levels, indicating sustained NOS2 upregulation in p53 KO mice.
Conclusions:
- p53 acts as a transrepressor of NOS2 expression in vivo.
- p53 plays a critical role in attenuating excessive NO production through a negative feedback loop.
- The absence of p53 leads to dysregulated NO homeostasis and sustained NOS2 activity.