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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Small-molecule inhibitor which reactivates p53 in human T-cell leukemia virus type 1-transformed cells
Kyung-Jin Jung1, Arindam Dasgupta, Keven Huang
1Virus Tumor Biology Section, Laboratory of Cellular Oncology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.
Abstract:
Human T-cell leukemia virus type 1 (HTLV-1) is the etiologic agent of the aggressive and fatal disease adult T-cell leukemia. Previous studies have demonstrated that the HTLV-1-encoded Tax protein inhibits the function of tumor suppressor p53 through a Tax-induced NF-kappaB pathway. Given these attributes, we were interested in the activity of small-molecule inhibitor 9-aminoacridine (9AA), an anticancer drug that targets two important stress response pathways, NF-kappaB and p53. In the present study, we have examined the effects of 9AA on HTLV-1-transformed cells. Treatment of HTLV-1-transformed cells with 9AA resulted in a dramatic decrease in cell viability. Consistent with these results, we observed an increase in the percentage of cells in sub-G(1) and an increase in the number of cells positive by terminal deoxynucleotidyltransferase-mediated dUTP-biotin nick end labeling assay following treatment of HTLV-1-transformed cells with 9AA. In each assay, HTLV-1-transformed cells C8166, Hut102, and MT2 were more sensitive to treatment with 9AA than control CEM and peripheral blood mononuclear cells. Analyzing p53 function, we demonstrate that treatment of HTLV-1-transformed cells with 9AA resulted in an increase in p53 protein and activation of p53 transcription activity. Of significance, 9AA-induced cell death could be blocked by introduction of a p53 small interfering RNA, linking p53 activity and cell death. These results suggest that Tax-repressed p53 function in HTLV-1-transformed cells is "druggable" and can be restored by treatment with 9AA. The fact that 9AA induces p53 and inhibits NF-kappaB suggests a promising strategy for the treatment of HTLV-1-transformed cells.
Insights
The small-molecule inhibitor 9-aminoacridine (9AA) effectively reduces viability in Human T-cell leukemia virus type 1 (HTLV-1)-transformed cells. This drug restores tumor suppressor p53 function, offering a promising strategy against adult T-cell leukemia.
Area of Science:
- Oncology
- Virology
- Molecular Biology
Background:
- Human T-cell leukemia virus type 1 (HTLV-1) causes adult T-cell leukemia, a fatal cancer.
- The HTLV-1 Tax protein suppresses tumor suppressor p53 via the NF-kappaB pathway.
Purpose of the Study:
- To investigate the efficacy of 9-aminoacridine (9AA), an inhibitor of NF-kappaB and p53 pathways, against HTLV-1-transformed cells.
- To determine if 9AA can restore p53 function suppressed by HTLV-1 Tax protein.
Main Methods:
- Treatment of HTLV-1-transformed cell lines (C8166, Hut102, MT2) and control cells with 9AA.
- Assays for cell viability, apoptosis (sub-G1, TUNEL), p53 protein levels, and p53 transcriptional activity.
- Use of p53 small interfering RNA (siRNA) to assess the role of p53 in 9AA-induced cell death.
Main Results:
- 9AA significantly decreased viability and induced apoptosis in HTLV-1-transformed cells, which were more sensitive than control cells.
- 9AA treatment increased p53 protein levels and restored p53 transcriptional activity.
- 9AA-induced cell death was blocked by p53 siRNA, confirming p53's critical role.
Conclusions:
- The p53 pathway, suppressed by HTLV-1 Tax, is druggable with 9AA in HTLV-1-transformed cells.
- 9AA's dual action of restoring p53 and inhibiting NF-kappaB presents a potential therapeutic strategy for adult T-cell leukemia.
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