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Epigenetic Deregulation of Apoptosis in Cancers

Ezgi Ozyerli‐Goknar, Tugba Bagcı-Önder

2021Cancers82 citationsDOIOpen Access PDF

Abstract

Cancer cells possess the ability to evade apoptosis. Genetic alterations through mutations in key genes of the apoptotic signaling pathway represent a major adaptive mechanism of apoptosis evasion. In parallel, epigenetic changes via aberrant modifications of DNA and histones to regulate the expression of pro- and antiapoptotic signal mediators represent a major complementary mechanism in apoptosis regulation and therapy response. Most epigenetic changes are governed by the activity of chromatin modifying enzymes that add, remove, or recognize different marks on histones and DNA. Here, we discuss how apoptosis signaling components are deregulated at epigenetic levels, particularly focusing on the roles of chromatin-modifying enzymes in this process. We also review the advances in cancer therapies with epigenetic drugs such as DNMT, HMT, HDAC, and BET inhibitors, as well as their effects on apoptosis modulation in cancer cells. Rewiring the epigenome by drug interventions can provide therapeutic advantage for various cancers by reverting therapy resistance and leading cancer cells to undergo apoptotic cell death.

Topics & Concepts

EpigeneticsChromatinHistoneEpigenomeBiologyApoptosisCancer researchCancerCell biologyCancer cellEpigenetic therapyEpigenetic regulation of neurogenesisChromatin remodelingHistone deacetylaseCancer epigeneticsDNA methylationGeneticsDNAGene expressionGeneHistone methyltransferaseEpigenetics and DNA MethylationHistone Deacetylase Inhibitors ResearchProtein Degradation and Inhibitors