Armen Parsyan, Harjot Athwal, Vasudeva Bhat, Alison L Allan
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引用次数: 0
Abstract
Polo-like kinase 4 (PLK4) is a key kinase regulating centriole duplication, centrosome maturation, cytokinesis and other cellular processes. Growing evidence suggests a critical role of PLK4 in the development and progression of various cancers. In many cancer types, its upregulation leads to pro-oncogenic phenotypes, while its pharmacologic inhibition leads to anticancer effects. Functionally, PLK4 affects cancer cell proliferation, growth, motility, invasion, migration, epithelial-mesenchymal transition, apoptosis and other critical oncogenic processes. In breast cancer, PLK4 is associated with centrosome amplification, aneuploidy and chromosomal instability, promoting invasive phenotypes and resistance to cancer cell death. PLK4 shows great promise as a prognostic and predictive biomarker in breast cancer. It is commonly found to be overexpressed in primary human breast cancers and is associated with poor oncologic outcomes, clinicopathologic parameters, and high-risk subtypes. Various compounds, such as CFI-400945, centrinone B, and others have been developed to inhibit PLK4 activity. Preclinical studies have shown that PLK4 inhibitors lead to decreased proliferation, growth and migration and increased breast cancer cell death. Moreover, PLK4 inhibition can serve to enhance the effects of other treatments, including radiotherapy. Clinical studies have been initiated with some of these compounds in cancer patients, including those with breast cancer. This manuscript discusses the role of PLK4 as a promising therapeutic target in breast cancer, one of the most common causes of morbidity and mortality in women.
期刊介绍:
Carcinogenesis: Integrative Cancer Research is a multi-disciplinary journal that brings together all the varied aspects of research that will ultimately lead to the prevention of cancer in man. The journal publishes papers that warrant prompt publication in the areas of Biology, Genetics and Epigenetics (including the processes of promotion, progression, signal transduction, apoptosis, genomic instability, growth factors, cell and molecular biology, mutation, DNA repair, genetics, etc.), Cancer Biomarkers and Molecular Epidemiology (including genetic predisposition to cancer, and epidemiology), Inflammation, Microenvironment and Prevention (including molecular dosimetry, chemoprevention, nutrition and cancer, etc.), and Carcinogenesis (including oncogenes and tumor suppressor genes in carcinogenesis, therapy resistance of solid tumors, cancer mouse models, apoptosis and senescence, novel therapeutic targets and cancer drugs).