International audienceABSTRACT DNA methylation (DNAme) is a key epigenetic mark that regulates critical biological processes maintaining overall genome stability. Given its pleiotropic function, studies of DNAme dynamics are crucial, but currently available tools to interfere with DNAme have limitations and major cytotoxic side effects. Here, we present untransformed and cancer cell models that allow inducible and reversible global modulation of DNAme through DNMT1 depletion. By dynamically assessing the effects of induced passive demethylation through cell divisions at both the whole genome and locus-specific level, we reveal a cooperative activity between DNMT1 and DNMT3B to maintain and control DNAme. Moreover, we show that gradual loss ...
DNA methylation and histone modifications are two major epigenetic events regulating gene expression...
DNA methylation is a major epigenetic mechanism that regulates many cellular activities such as diff...
DNA methylation is a major epigenetic mechanism that regulates many cellular activities such as diff...
SummaryGlobal patterns of DNA methylation, mediated by the DNA methyltransferases (DNMTs), are disru...
SummaryDNA methylation, mediated by the combined action of three DNA methyltransferases (DNMT1, DNMT...
DNA methylation is a key epigenetic modification involved in regulating gene expression and maintain...
DNA methylation is a key epigenetic modification involved in regulating gene expression and maintain...
DNA methylation and histone modifications are key epigenetic regulators of gene expression, and tigh...
SummaryDNA methylation, mediated by the combined action of three DNA methyltransferases (DNMT1, DNMT...
International audienceDNA methylation and histone modifications are key epigenetic regulators of gen...
DNA methylation, mediated by the combined action of three DNA methyltransferases (DNMT1, DNMT3A, and...
DNA methylation is vital in genome functions as diverse as parental imprinting, X chromosome inactiv...
International audienceDNA methylation and histone modifications are key epigenetic regulators of gen...
International audienceDNA methylation and histone modifications are key epigenetic regulators of gen...
SummaryGlobal patterns of DNA methylation, mediated by the DNA methyltransferases (DNMTs), are disru...
DNA methylation and histone modifications are two major epigenetic events regulating gene expression...
DNA methylation is a major epigenetic mechanism that regulates many cellular activities such as diff...
DNA methylation is a major epigenetic mechanism that regulates many cellular activities such as diff...
SummaryGlobal patterns of DNA methylation, mediated by the DNA methyltransferases (DNMTs), are disru...
SummaryDNA methylation, mediated by the combined action of three DNA methyltransferases (DNMT1, DNMT...
DNA methylation is a key epigenetic modification involved in regulating gene expression and maintain...
DNA methylation is a key epigenetic modification involved in regulating gene expression and maintain...
DNA methylation and histone modifications are key epigenetic regulators of gene expression, and tigh...
SummaryDNA methylation, mediated by the combined action of three DNA methyltransferases (DNMT1, DNMT...
International audienceDNA methylation and histone modifications are key epigenetic regulators of gen...
DNA methylation, mediated by the combined action of three DNA methyltransferases (DNMT1, DNMT3A, and...
DNA methylation is vital in genome functions as diverse as parental imprinting, X chromosome inactiv...
International audienceDNA methylation and histone modifications are key epigenetic regulators of gen...
International audienceDNA methylation and histone modifications are key epigenetic regulators of gen...
SummaryGlobal patterns of DNA methylation, mediated by the DNA methyltransferases (DNMTs), are disru...
DNA methylation and histone modifications are two major epigenetic events regulating gene expression...
DNA methylation is a major epigenetic mechanism that regulates many cellular activities such as diff...
DNA methylation is a major epigenetic mechanism that regulates many cellular activities such as diff...