Inhibition of Cellular MEK/ERK Signaling Suppresses Murine Papillomavirus Type 1 Replicative Activities and Promotes

Insights

MEK inhibitors show promise as antiviral therapies for human papillomavirus (HPV) infections. Oral administration of a MEK1/2 inhibitor promoted papilloma regression and reduced viral DNA and gene expression in a mouse model.

Area of Science:

  • Virology
  • Oncology
  • Pharmacology

Background:

  • Human papillomaviruses (HPVs) cause significant global morbidity and oncogenic infections, necessitating novel antiviral therapies despite existing vaccines.
  • The lack of effective treatments for established HPV infections and the continued disease burden underscore the need for new therapeutic strategies.
  • The murine papillomavirus type 1 (MmuPV1) model offers a platform for evaluating antiviral efficacy against papillomaviruses in vivo.

Approach:

  • Investigated the anti-papillomavirus potential of MEK/ERK signaling inhibitors in a preclinical mouse model.
  • Administered a MEK1/2 inhibitor orally to immunodeficient mice with MmuPV1-induced papillomas.
  • Quantitatively analyzed viral gene expression (E6/E7 mRNAs), viral DNA, and L1 protein levels within lesions.

Key Points:

  • Oral MEK1/2 inhibitor treatment promoted significant papilloma regression in MmuPV1-infected mice.
  • Inhibition of MEK/ERK signaling reduced viral replication, evidenced by decreased MmuPV1 DNA and L1 protein expression.
  • MEK inhibition suppressed oncogenic HPV early gene expression and MmuPV1 replication, consistent with in vitro findings.
  • MEK inhibitors demonstrated potent antiviral and anti-tumor properties, including protection against secondary tumor development.

Conclusions:

  • Cellular MEK1/2 signaling is crucial for both early and late stages of MmuPV1 replication and pathogenesis.
  • MEK inhibitors represent a promising therapeutic strategy for treating papillomavirus infections and associated diseases.
  • Further investigation of MEK inhibitors as papillomavirus antiviral therapies is warranted based on preclinical efficacy.

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