p62 mRNA suppresses NLRP1 expression in cutaneous SCC cells through miR-34a-5p

Paulina Hennig1, Patrick Turko1, Michela Di Filippo1

  • 1Department of Dermatology, University Hospital Zurich, CH-8952, Schlieren, Switzerland.

PubMed

Insights

p62 protein upregulates in cutaneous squamous cell carcinomas (cSCCs), suppressing NLRP1 inflammasome sensor expression via mRNA regulation and microRNAs like miR-34a-5p. Restoring miR-34a may treat cSCCs by re-establishing NLRP1 levels.

Area of Science:

  • Immunology
  • Oncology
  • Molecular Biology

Background:

  • NLRP1 inflammasome sensor is crucial in epithelial cells, with mutations linked to inflammatory skin diseases and skin cancer.
  • NLRP1 expression is reduced in cutaneous squamous cell carcinomas (cSCCs), indicating a complex role in skin cancer development.
  • p62 (SQSTM1), a protein involved in autophagy, is upregulated in cSCCs and contributes to tumor development.

Purpose of the Study:

  • To investigate the molecular mechanisms by which p62 suppresses NLRP1 expression in cSCCs.
  • To identify the role of mRNA regulation and microRNAs in the p62-mediated suppression of NLRP1.
  • To explore the therapeutic potential of targeting this pathway in cSCC treatment.

Main Methods:

  • RNA sequencing was used to analyze gene expression changes in SCC cells regulated by p62 mRNA.
  • Knockdown and knockout experiments were performed to assess the impact of p62 on NLRP1 expression.
  • MicroRNA analysis identified differentially regulated microRNAs, including miR-34a-5p.

Main Results:

  • Suppression of NLRP1 expression by p62 in SCC cells occurs at the mRNA level.
  • Knockdown or knockout of p62 mRNA, not just protein, rescued NLRP1 activation.
  • miR-34a-5p was identified as a key microRNA, indirectly increasing NLRP1 expression at the RNA level, despite not directly binding to p62 or NLRP1 mRNA.

Conclusions:

  • A novel pathway involving p62-mediated mRNA regulation and microRNAs, including miR-34a-5p, suppresses NLRP1 inflammasome sensor expression in cSCCs.
  • Pharmacological enhancement of miR-34a-5p expression could be a therapeutic strategy for cSCCs, potentially restoring NLRP1 levels and targeting other miR-34a-regulated proteins.

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