The epigenetic regulation of DNA-templated processes has been intensely studied over the last 15 years. DNA methylation, histone modification, nucleosome remodeling, and RNA-mediated targeting regulate many biological processes that are fundamental to the genesis of cancer. Here, we present the basic principles behind these epigenetic pathways and highlight the evidence suggesting that their misregulation can culminate in cancer. This information, along with the promising clinical and preclinical results seen with epigenetic drugs against chromatin regulators, signifies that it is time to embrace the central role of epigenetics in cancer
Aberrant gene function and altered patterns of gene expression are key features of cancer. Growing e...
In the past, the term epigenetics was used to describe all biological phenomena that do not follow n...
In the past, the term epigenetics was used to describe all biological phenomena that do not follow n...
The epigenetic regulation of DNA-templated processes has been intensely studied over the last 15 yea...
Epigenetics deals with the interactions between genes and the immediate cellular environment. These ...
The correlation between epigenetic aberrations and disease underscores the importance of epigenetic ...
AbstractThe complexity of the mammalian genome is regulated by heritable epigenetic mechanisms, whic...
The epigenomic era has revealed a well-connected network of molecular processes that shape the chrom...
The epigenomic era has revealed a well-connected network of molecular processes that shape the chrom...
Defects in chromatin modifiers and remodelers have been described both for hematological and solid m...
Defects in chromatin modifiers and remodelers have been described both for hematological and solid m...
Epigenetics is one of the most rapidly expanding fields in biology that refers to the somatically h...
Epigenetic and genetic alterations have long been thought of as two separate mechanisms participatin...
Epigenetics “above or over genetics” is the term used for processes that result in modifications whi...
Data obtained from cutting-edge research have shown that deregulated epigenetic marks are critical h...
Aberrant gene function and altered patterns of gene expression are key features of cancer. Growing e...
In the past, the term epigenetics was used to describe all biological phenomena that do not follow n...
In the past, the term epigenetics was used to describe all biological phenomena that do not follow n...
The epigenetic regulation of DNA-templated processes has been intensely studied over the last 15 yea...
Epigenetics deals with the interactions between genes and the immediate cellular environment. These ...
The correlation between epigenetic aberrations and disease underscores the importance of epigenetic ...
AbstractThe complexity of the mammalian genome is regulated by heritable epigenetic mechanisms, whic...
The epigenomic era has revealed a well-connected network of molecular processes that shape the chrom...
The epigenomic era has revealed a well-connected network of molecular processes that shape the chrom...
Defects in chromatin modifiers and remodelers have been described both for hematological and solid m...
Defects in chromatin modifiers and remodelers have been described both for hematological and solid m...
Epigenetics is one of the most rapidly expanding fields in biology that refers to the somatically h...
Epigenetic and genetic alterations have long been thought of as two separate mechanisms participatin...
Epigenetics “above or over genetics” is the term used for processes that result in modifications whi...
Data obtained from cutting-edge research have shown that deregulated epigenetic marks are critical h...
Aberrant gene function and altered patterns of gene expression are key features of cancer. Growing e...
In the past, the term epigenetics was used to describe all biological phenomena that do not follow n...
In the past, the term epigenetics was used to describe all biological phenomena that do not follow n...