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FKBP51 Affects TNF-Related Apoptosis Inducing Ligand Response in Melanoma
Martina Tufano1, Elena Cesaro1, Rosanna Martinelli2
1Dipartimento di Medicina Molecolaree Biotecnologie Mediche, Università degli Studi di Napoli Federico II, Naples, Italy.
Abstract:
Melanoma is one of the most immunogenic tumors and has the highest potential to elicit specific adaptive antitumor immune responses. Immune cells induce apoptosis of cancer cells either by soluble factors or by triggering cell-death pathways. Melanoma cells exploit multiple mechanisms to escape immune system tumoricidal control. FKBP51 is a relevant pro-oncogenic factor of melanoma cells supporting NF-κB-mediated resistance and cancer stemness/invasion epigenetic programs. Herein, we show that FKBP51-silencing increases TNF-related apoptosis-inducing ligand (TRAIL)-R2 (DR5) expression and sensitizes melanoma cells to TRAIL-induced apoptosis. Consistent with the general increase in histone deacetylases, as by the proteomic profile, the immune precipitation assay showed decreased acetyl-Yin Yang 1 (YY1) after FKBP51 depletion, suggesting an impaired repressor activity of this transcription factor. ChIP assay supported this hypothesis. Compared with non-silenced cells, a reduced acetyl-YY1 was found on the DR5 promoter, resulting in increased DR5 transcript levels. Using Crispr/Cas9 knockout (KO) melanoma cells, we confirmed the negative regulation of DR5 by FKBP51. We also show that KO cells displayed reduced levels of acetyl-EP300 responsible for YY1 acetylation, along with reduced acetyl-YY1. Reconstituting FKBP51 levels contrasted the effects of KO on DR5, acetyl-YY1, and acetyl-EP300 levels. In conclusion, our finding shows that FKBP51 reduces DR5 expression at the transcriptional level by promoting YY1 repressor activity. Our study supports the conclusion that targeting FKBP51 increases the expression level of DR5 and sensitivity to TRAIL-induced cell death, which can improve the tumoricidal action of immune cells.
Insights
Targeting FKBP51 in melanoma cells enhances expression of TRAIL-R2 (DR5), increasing sensitivity to TRAIL-induced apoptosis. This mechanism boosts the tumoricidal action of immune cells against melanoma.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Melanoma is highly immunogenic but employs mechanisms to evade immune surveillance.
- FKBP51 is a pro-oncogenic factor in melanoma, promoting resistance and invasion.
- Immune cells induce cancer cell apoptosis, but melanoma cells resist this effectively.
Purpose of the Study:
- To investigate the role of FKBP51 in melanoma's immune evasion.
- To determine if FKBP51 influences sensitivity to TRAIL-induced apoptosis.
- To elucidate the molecular mechanisms by which FKBP51 affects melanoma cell death pathways.
Main Methods:
- FKBP51-silencing and CRISPR/Cas9 knockout (KO) in melanoma cells.
- Analysis of TNF-related apoptosis-inducing ligand (TRAIL)-R2 (DR5) expression.
- Immune precipitation and ChIP assays to assess YY1 acetylation and promoter binding.
- Proteomic analysis to evaluate histone deacetylases and EP300 levels.
Main Results:
- FKBP51-silencing increased DR5 expression and sensitized cells to TRAIL-induced apoptosis.
- FKBP51 depletion reduced acetylated Yin Yang 1 (YY1) levels, impairing its repressor activity on the DR5 promoter.
- CRISPR/Cas9 KO of FKBP51 confirmed negative regulation of DR5 and reduced acetyl-EP300, essential for YY1 acetylation.
- Restoring FKBP51 reversed these effects.
Conclusions:
- FKBP51 negatively regulates DR5 expression transcriptionally by enhancing YY1 repressor activity.
- Targeting FKBP51 increases DR5 levels and melanoma cell sensitivity to TRAIL-induced apoptosis.
- This strategy holds potential for improving immune-mediated tumoricidal effects against melanoma.
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