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Published on: June 26, 2020
ARTIK-52 induces replication-dependent DNA damage and p53 activation exclusively in cells of prostate and breast
Daria Fleyshman1, Peter Cheney1, Anda Ströse1
1a Department of Cell Stress Biology , Roswell Park Cancer Institute , Buffalo , NY , USA.
Abstract:
The realization, that the androgen receptor (AR) is essential for prostate cancer (PC) even after relapse following androgen deprivation therapy motivated the search for novel types of AR inhibitors. We proposed that targeting AR expression versus its function would work in cells having either wild type or mutant AR as well as be independent of androgen synthesis pathways. Previously, using a phenotypic screen in androgen-independent PC cells we identified a small molecule inhibitor of AR, ARTIK-52. Treatment with ARTIK-52 caused the loss of AR protein and death of AR-positive, but not AR-negative, PC cells. Here we present data that ARTIK-52 induces degradation of AR mRNA through a mechanism that we were unable to establish. However, we found that ARTIK-52 is toxic to breast cancer (BC) cells expressing AR, although they were not sensitive to AR knockdown, suggesting an AR-independent mechanism of toxicity. Using different approaches we detected that ARTIK-52 induces replication-dependent double strand DNA breaks exclusively in cancer cells of prostate and breast origin, while not causing DNA damage, or any toxicity, in normal cells, as well as in non-PC and non-BC tumor cells, independent of their proliferation status. This amazing specificity, combined with such a basic mechanism of toxicity, makes ARTIK-52 a potentially useful tool to discover novel attractive targets for the treatment of BC and PC. Thus, phenotypic screening allowed us to identify a compound, whose properties cannot be predicted based on existing knowledge and moreover, uncover a barely known link between AR and DNA damage response in PC and BC epithelial cells.
Insights
A novel compound, ARTIK-52, targets androgen receptor (AR) in prostate and breast cancers by inducing DNA damage. This ARTIK-52 shows specificity for cancer cells, offering potential for new therapeutic strategies.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Androgen receptor (AR) remains crucial in prostate cancer (PC) post-treatment, driving the need for new AR inhibitors.
- Targeting AR expression offers a potential strategy independent of AR mutations or androgen synthesis.
Purpose of the Study:
- To identify novel AR inhibitors using phenotypic screening.
- To investigate the mechanism of action and specificity of the identified compound, ARTIK-52.
Main Methods:
- Phenotypic screening of androgen-independent PC cells.
- Treatment of cancer cell lines and normal cells with ARTIK-52.
- Assessment of AR protein and mRNA levels.
- Analysis of DNA damage (double-strand breaks) and cellular toxicity.
Main Results:
- ARTIK-52, identified via phenotypic screening, reduces AR protein and AR mRNA levels, leading to AR-positive PC cell death.
- ARTIK-52 exhibits toxicity in AR-expressing breast cancer (BC) cells via an AR-independent mechanism.
- ARTIK-52 specifically induces replication-dependent double-strand DNA breaks in PC and BC cells, without affecting normal or other tumor cells.
Conclusions:
- ARTIK-52 demonstrates remarkable specificity and a unique mechanism of inducing DNA damage in prostate and breast cancer cells.
- This compound represents a promising tool for discovering new therapeutic targets and understanding the AR-DNA damage response link in these cancers.
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