Aspects of the epigenetic regulation of emt related to cancer metastasis

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Abstract

Epithelial to mesenchymal transition (EMT) occurs during the pathological process associated with tumor progression and is considered to influence and promote the metastatic cascade. Characterized by loss of cell adhesion and apex base polarity, EMT enhances cell motility and me-tastasis. The key markers of the epithelial to mesenchymal transition are proteins characteristic of the epithelial phenotype, e.g., E-cadherin, cytokeratins, occludin, or desmoplakin, the concentra-tion and activity of which are reduced during this process. On the other hand, as a result of ac-quiring the characteristics of mesenchymal cells, an increased amount of N-cadherin, vimentin, fi-bronectin, or vitronectin is observed. Importantly, epithelial cells undergo partial EMT where some of the cells show both epithelial and mesenchymal characteristics. The significant influence of epigenetic regulatory mechanisms is observed in the gene expression involved in EMT. Among the epigenetic modifications accompanying incorrect genetic reprogramming in cancer are changes in the level of DNA methylation within the CpG islands and posttranslational covalent changes of histone proteins. All observed modifications, which are stable but reversible changes, affect the level of gene expression leading to the development and progression of the disease, and conse-quently affect the uncontrolled growth of the population of cancer cells.

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Nowak, E., & Bednarek, I. (2021, December 1). Aspects of the epigenetic regulation of emt related to cancer metastasis. Cells. MDPI. https://doi.org/10.3390/cells10123435

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