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PLK-1 Targeted Inhibitors and Their Potential against Tumorigenesis
1Department of Biochemistry, Institute of Cell Differentiation and Aging, College of Medicine, Hallym University, Chuncheon, Gangwon-do 200-702, Republic of Korea.
Abstract:
Mitotic kinases are the key components of the cell cycle machinery and play vital roles in cell cycle progression. PLK-1 (Polo-like kinase-1) is a crucial mitotic protein kinase that plays an essential role in both the onset of G2/M transition and cytokinesis. The overexpression of PLK-1 is strongly correlated with a wide spectrum of human cancers and poor prognosis. The (si)RNA-mediated depletion of PLK-1 arrests tumor growth and triggers apoptosis in cancer cells without affecting normal cells. Therefore, PLK-1 has been selected as an attractive anticancer therapeutic drug target. Some small molecules have been discovered to target the catalytic and noncatalytic domains of PLK-1. These domains regulate the catalytic activation and subcellular localization of PLK-1. However, while PLK-1 inhibitors block tumor growth, they have been shown to cause severe adverse complications, such as toxicity, neutropenia, and bone marrow suppression during clinical trials, due to a lack of selectivity and specificity within the human kinome. To minimize these toxicities, inhibitors should be tested against all protein kinases in vivo and in vitro to enhance selectivity and specificity against targets. Here, we discuss the potency and selectivity of PLK-1-targeted inhibitors and their molecular interactions with PLK-1 domains.
Insights
Polo-like kinase-1 (PLK-1) is a key cancer target, but inhibitors cause toxicity. Enhancing PLK-1 inhibitor selectivity is crucial for effective cancer therapy with fewer side effects.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- Mitotic kinases regulate cell cycle progression.
- Polo-like kinase-1 (PLK-1) is vital for G2/M transition and cytokinesis.
- PLK-1 overexpression correlates with human cancers and poor prognosis.
Purpose of the Study:
- To discuss the potency and selectivity of PLK-1 inhibitors.
- To explore molecular interactions of inhibitors with PLK-1 domains.
- To address toxicity issues of current PLK-1 inhibitors.
Main Methods:
- Review of existing literature on PLK-1 inhibitors.
- Analysis of inhibitor interactions with catalytic and noncatalytic PLK-1 domains.
- Discussion of in vitro and in vivo kinase screening for selectivity.
Main Results:
- PLK-1 inhibitors show promise in arresting tumor growth and inducing apoptosis.
- Current inhibitors exhibit lack of selectivity, leading to adverse complications like toxicity and bone marrow suppression.
- Targeting PLK-1 catalytic and noncatalytic domains is key to its regulation.
Conclusions:
- PLK-1 is an attractive anticancer therapeutic target.
- Minimizing toxicity requires enhanced selectivity and specificity of inhibitors.
- Further research on PLK-1 inhibitors should focus on improving safety profiles.
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