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Antitumor effects of a novel small molecule targeting PCNA chromatin association in prostate cancer
Kelsey L Dillehay1, Shan Lu2, Zhongyun Dong3
1Department of Internal Medicine, University of Cincinnati College of Medicine, Cincinnati, Ohio.
Abstract:
Proliferating cell nuclear antigen (PCNA) plays an essential role in DNA replication and repair. Tumor cells express high levels of PCNA, identifying it as a potentially ideal target for cancer therapy. Previously, we identified nine compounds termed PCNA inhibitors (PCNA-Is) that bind directly to PCNA, stabilize PCNA trimer structure, reduce chromatin-associated PCNA, and selectively inhibit tumor cell growth. Of these compounds, PCNA-I1 is most potent. The purposes of this study were to further investigate the effects of targeting PCNA chromatin association on DNA damage and cytotoxicity and to evaluate the therapeutic potential of PCNA-I1 against tumors in mice. Given the important roles of tumor suppressor p53 in regulating sensitivity of tumor cells to chemotherapeutics, we performed studies in two human prostate cancer cell lines differing in p53 expression: LNCaP cells (wild-type p53) and PC-3 cells (p53-null). PCNA-I1 induced DNA damage and apoptosis in both LNCaP and PC-3 cells and enhanced DNA damage and apoptosis triggered by cisplatin. PCNA-I1 also induced autophagy in PC-3 cells. A short-term pretreatment with PCNA-I1 reduced colony formation by 50% in both cell lines. These data suggest that, unlike many other cytotoxic drugs, the effects of PCNA-I1 on tumor cells do not depend on expression of p53. Intravenous administrations of PCNA-I1 significantly retarded growth of LNCaP tumors of in nude mice without causing detectable effects on mouse body weight and hematology profiles. These data provide proof of concept that targeting PCNA chromatin association could be a novel and effective therapeutic approach for treatment of cancer.
Insights
Targeting proliferating cell nuclear antigen (PCNA) with PCNA inhibitor 1 (PCNA-I1) shows promise for cancer therapy. PCNA-I1 effectively reduces tumor growth in mice, independent of p53 status, offering a novel therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Proliferating cell nuclear antigen (PCNA) is crucial for DNA replication and repair.
- Elevated PCNA levels in tumor cells present a potential therapeutic target.
- PCNA inhibitors (PCNA-Is) were previously identified, with PCNA-I1 showing high potency.
Purpose of the Study:
- To investigate the impact of targeting PCNA chromatin association on DNA damage and cytotoxicity.
- To evaluate the therapeutic efficacy of PCNA-I1 against tumors in a mouse model.
- To assess PCNA-I1's effectiveness in cancer cell lines with differing p53 expression.
Main Methods:
- Utilized LNCaP (wild-type p53) and PC-3 (p53-null) human prostate cancer cell lines.
- Administered PCNA-I1 alone and in combination with cisplatin.
- Assessed DNA damage, apoptosis, autophagy, and colony formation.
- Evaluated tumor growth retardation and systemic toxicity in nude mice.
Main Results:
- PCNA-I1 induced DNA damage and apoptosis in both cell lines, independent of p53 status.
- PCNA-I1 enhanced cisplatin-induced DNA damage and apoptosis.
- PCNA-I1 induced autophagy in p53-null PC-3 cells.
- PCNA-I1 pretreatment reduced colony formation by 50% in both cell lines.
- Intravenous PCNA-I1 significantly retarded tumor growth in mice without adverse effects.
Conclusions:
- Targeting PCNA chromatin association is a viable therapeutic strategy for cancer.
- PCNA-I1 demonstrates significant anti-tumor activity and is effective regardless of p53 expression.
- PCNA-I1 represents a promising novel therapeutic agent for cancer treatment.
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