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Inflammation regulates microRNA expression in cooperation with p53 and nitric oxide

Ewy Mathé1, Giang H Nguyen, Naotake Funamizu

  • 1Inflammation and Cancer Section, Laboratory of Human Carcinogenesis, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA.

Insights

Inflammation alters microRNA (miRNA) expression, with specific changes influenced by p53 and nitric oxide (NO). Antioxidants can reduce these inflammation-induced miRNA shifts in mice.

Area of Science:

  • Molecular Biology
  • Immunology
  • Genetics

Background:

  • MicroRNAs (miRNAs) are key regulators of gene expression, and their altered expression is linked to cancer.
  • Inflammation, nitric oxide (NO), and the p53 pathway are implicated in lymphoma development.
  • A negative feedback loop exists between p53 and NOS2, suggesting complex interactions.

Purpose of the Study:

  • To investigate how inflammation-induced oxidative and nitrosative stress impacts miRNA expression.
  • To determine the roles of p53 and NOS2 (nitric oxide synthase 2) in mediating these miRNA changes.
  • To explore the potential of antioxidants in modulating these inflammation-driven miRNA alterations.

Main Methods:

  • Utilized a genetic strategy in mouse models deficient in p53 or NOS2.
  • Induced inflammation using Corynebacterium parvum (C. parvum) and analyzed miRNA expression profiles in spleen tissue.
  • Administered N-acetyl cysteine, an antioxidant, to wild-type mice treated with C. parvum.

Main Results:

  • C. parvum-induced inflammation significantly altered miRNA profiles in wild-type, p53-knockout, and NOS2-knockout mice.
  • Specific miRNAs (miR-21, miR-29b, miR-34a/b/c) were increased, while others (miR-29c, miR-181a/c) were decreased in wild-type mice.
  • p53 deficiency affected miR-34b/c and miR-29c expression, while NOS2 deficiency impacted miR-29b/c expression, indicating distinct roles for p53 and NO.

Conclusions:

  • Inflammation modulates miRNA expression in vivo.
  • The alterations in specific miRNAs during inflammation are influenced by the p53 pathway and nitric oxide.
  • Antioxidant treatment can mitigate certain inflammation-induced miRNA changes, suggesting a role for oxidative stress.

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