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Updated: Sep 17, 2025

An In Vitro Protocol for Evaluating MicroRNA Levels, Functions, and Associated Target Genes in Tumor Cells
Published on: May 21, 2019
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.
Abstract:
The inflammasome sensor NLRP1 is mainly expressed by epithelial cells including keratinocytes of human skin. Germline gain-of-function mutations in NLRP1 cause inflammatory skin syndromes and predispose patients to the development of cutaneous squamous cell carcinomas (cSCCs), a major type of skin cancer originating from keratinocytes. However, expression of NLRP1 is strongly reduced in cSCCs suggesting a complex role of the NLRP1 inflammasome in the development of this type of skin cancer. Suppression of NLRP1 expression in SCC cells is partially caused by an increase in p62 (SQSTM1), a cargo receptor for autophagy-dependent protein degradation. p62 is upregulated in numerous types of cancer and plays key roles in tumor development by activating different pathways. Here, we characterized the molecular mechanisms underlying suppression of NLRP1 expression by p62 in cSCCs. In SCC cells, NLRP1 activation is rescued by a knockdown or knockout of p62 mRNA and, consequently, protein expression, rather than by a knockout of p62 protein expression only. As these experiments suggest a regulation of NLRP1 by the p62 mRNA, we characterized p62 mRNA-regulated gene expression in SCC cells through RNA sequencing. In addition to mRNAs, we identified several differentially regulated microRNAs (miRs), including miR-34a-5p. These short non-coding RNAs regulate the stability or translation of mRNAs in a dynamic manner and a single miR can target multiple mRNAs. miR-34a-5p is an established tumor suppressor in different types of cancer and its expression is also downregulated in cSCCs. Although miR-34a-5p seems to bind neither p62 nor NLRP1 mRNA directly, it increases NLRP1 expression, most likely through an indirect and complex mechanism, which occurs at the RNA level. In summary, our findings revealed a novel pathway regulating suppression of the inflammasome sensor NLRP1 in SCC cells by p62, which occurs at the mRNA level and is mediated by miRs, including the tumor suppressive miR-34a-5p. Therefore, a pharmacological increase in miR-34a expression represents a treatment option for cSCC patients that allows not only to target know proteins regulated by miR-34a but also a reconstitution of NLRP1 expression.
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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