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Potential Tumor Suppressor Role of Polo-like Kinase 5 in Cancer
Shengqin Su1, Mary Ann Ndiaye1, Glorimar Guzmán-Pérez1
1Department of Dermatology, University of Wisconsin, Madison, WI 53705, USA.
Abstract:
The polo-like kinase (PLK) family of serine/threonine kinases contains five members (PLK1-5). Most PLKs are involved in cell cycle regulation and DNA damage response. However, PLK5 is different as it lacks a functional kinase domain and is not involved in cell cycle control. PLK5 remains the least-studied family member, and its role in oncogenesis remains enigmatic. Here, we identified tissues with high PLK5 expression by leveraging the Protein Atlas and GTEx databases with relevant literature and selected ovarian, lung, testis, endometrium, cervix, and fallopian tube tissues as candidates for further investigation. Subsequently, we performed immunohistochemical staining for PLK5 on multiple tissue microarrays followed by Vectra scanning and quantitative inForm analysis. This revealed consistently downregulated PLK5 expression in these cancers compared to normal tissues. To validate and extend our findings, we performed pan-cancer analysis of PLK5 expression using public RNAseq databases (TCGA and GTEx). We found PLK5 is downregulated in 18 cancer types, including our selected candidates. Interestingly, we also observed PLK5 expression remains consistently low in later stages of cancer, suggesting PLK5 may have a greater role in tumor initiation than cancer progression. Overall, our study demonstrates PLK5 downregulation in multiple cancers, highlighting its role as a tumor suppressor.
Insights
Polo-like kinase 5 (PLK5) is downregulated in many cancers, suggesting it acts as a tumor suppressor. Its low expression in later cancer stages indicates a role in tumor initiation rather than progression.
Area of Science:
- Molecular Biology
- Oncology
- Cell Biology
Background:
- The polo-like kinase (PLK) family are key regulators of cell cycle and DNA damage response.
- PLK5, uniquely, lacks a kinase domain and its function in oncogenesis is unknown.
- Understanding PLK5's role is crucial for cancer research.
Purpose of the Study:
- To investigate the expression and role of PLK5 in human cancers.
- To identify cancer types exhibiting altered PLK5 expression.
- To determine if PLK5 functions as a tumor suppressor or oncogene.
Main Methods:
- Utilized Protein Atlas and GTEx databases to identify tissues with high PLK5 expression.
- Performed immunohistochemical staining on tissue microarrays for PLK5 quantification.
- Conducted pan-cancer analysis of PLK5 RNAseq data from TCGA and GTEx.
Main Results:
- PLK5 expression was consistently downregulated in ovarian, lung, testis, endometrium, cervix, and fallopian tube cancers compared to normal tissues.
- Pan-cancer analysis confirmed PLK5 downregulation across 18 cancer types.
- PLK5 expression remained low in advanced cancer stages, suggesting a role in tumor initiation.
Conclusions:
- PLK5 is frequently downregulated in multiple human cancers.
- The data supports a role for PLK5 as a tumor suppressor.
- PLK5 may be more critical in early tumor development than in cancer progression.
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