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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
TRIM8 restores p53 tumour suppressor function by blunting N-MYC activity in chemo-resistant tumours
Francesca Mastropasqua1, Flaviana Marzano1, Alessio Valletti1
1Institute of Biomedical Technologies ITB, CNR, Bari, Italy.
Background:
TRIM8 plays a key role in controlling the p53 molecular switch that sustains the transcriptional activation of cell cycle arrest genes and response to chemotherapeutic drugs. The mechanisms that regulate TRIM8, especially in cancers like clear cell Renal Cell Carcinoma (ccRCC) and colorectal cancer (CRC) where it is low expressed, are still unknown. However, recent studies suggest the potential involvement of some microRNAs belonging to miR-17-92 and its paralogous clusters, which could include TRIM8 in a more complex pathway.
Methods:
We used RCC and CRC cell models for in-vitro experiments, and ccRCC patients and xenograft transplanted mice for in vivo assessments. To measure microRNAs levels we performed RT-qPCR, while steady-states of TRIM8, p53, p21 and N-MYC were quantified at protein level by Western Blotting as well as at transcript level by RT-qPCR. Luciferase reporter assays were performed to assess the interaction between TRIM8 and specific miRNAs, and the potential effects of this interaction on TRIM8 expression. Moreover, we treated our cell models with conventional chemotherapeutic drugs or tyrosine kinase inhibitors, and measured their response in terms of cell proliferation by MTT and colony suppression assays.
Results:
We showed that TRIM8 is a target of miR-17-5p and miR-106b-5p, whose expression is promoted by N-MYC, and that alterations of their levels affect cell proliferation, acting on the TRIM8 transcripts stability, as confirmed in ccRCC patients and cell lines. In addition, reducing the levels of miR-17-5p/miR-106b-5p, we increased the chemo-sensitivity of RCC/CRC-derived cells to anti-tumour drugs used in the clinic. Intriguingly, this occurs, on one hand, by recovering the p53 tumour suppressor activity in a TRIM8-dependent fashion and, on the other hand, by promoting the transcription of miR-34a that turns off the oncogenic action of N-MYC. This ultimately leads to cell proliferation reduction or block, observed also in colon cancer xenografts overexpressing TRIM8.
Conclusions:
In this paper we provided evidence that TRIM8 and its regulators miR-17-5p and miR-106b-5 participate to a feedback loop controlling cell proliferation through the reciprocal modulation of p53, miR-34a and N-MYC. Our experiments pointed out that this axis is pivotal in defining drug responsiveness of cancers such ccRCC and CRC.
Insights
TRIM8, a key regulator of cell cycle arrest, is targeted by miR-17-5p and miR-106b-5p in clear cell Renal Cell Carcinoma (ccRCC) and colorectal cancer (CRC). Modulating these microRNAs enhances chemo-sensitivity by restoring p53 activity and reducing N-MYC, offering new therapeutic strategies for these cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- * TRIM8 (Tripartite Motif Containing 8) is crucial for the p53 molecular switch, regulating cell cycle arrest and response to chemotherapy.
- * TRIM8 expression is notably low in clear cell Renal Cell Carcinoma (ccRCC) and colorectal cancer (CRC).
- * MicroRNAs (miRNAs) from the miR-17-92 cluster and its paralogs are implicated in TRIM8 regulation, suggesting a complex pathway.
Purpose of the Study:
- * To elucidate the regulatory mechanisms of TRIM8 in ccRCC and CRC.
- * To investigate the role of specific miRNAs in controlling TRIM8 expression and function.
- * To assess the therapeutic potential of targeting the TRIM8-miRNA axis for cancer treatment.
Main Methods:
- * Utilized ccRCC and CRC cell lines for in vitro studies and patient-derived xenografts in mice for in vivo validation.
- * Quantified miRNA and mRNA levels using RT-qPCR, and protein levels via Western Blotting.
- * Employed luciferase reporter assays to confirm direct miRNA-TRIM8 interactions and assessed drug response using proliferation assays.
Main Results:
- * TRIM8 was identified as a direct target of miR-17-5p and miR-106b-5p, whose expression is promoted by N-MYC.
- * Downregulation of miR-17-5p/miR-106b-5p increased chemo-sensitivity in ccRCC and CRC cells by stabilizing TRIM8 transcripts.
- * This modulation restored p53 tumor suppressor activity and promoted miR-34a transcription, inhibiting N-MYC and reducing cell proliferation.
Conclusions:
- * A feedback loop involving TRIM8, miR-17-5p, miR-106b-5p, p53, miR-34a, and N-MYC controls cell proliferation.
- * This regulatory axis is critical for determining drug responsiveness in ccRCC and CRC.
- * Targeting this pathway presents a promising strategy for enhancing anti-cancer drug efficacy.
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