Dnmt3a and Dnmt3b are paralogous enzymes responsible for de novo DNA methylation but with distinguished biological functions. In mice, disruption of Dnmt3b but not Dnmt3a causes global DNA hypomethylation, especially in repetitive sequences, which comprise the large majority of methylated DNA in the genome. By measuring DNA methylation activity of Dnmt3a and Dnmt3b homologues from five species, we found that mammalian Dnmt3b possessed significantly higher methylation activity on chromatin DNA than Dnmt3a and non-mammalian Dnmt3b. Sequence comparison and mutagenesis experiments identified a single amino acid substitution (I662N) in mammalian Dnmt3b as being crucial for its high chromatin DNA methylation activity. Further mechanistic studies ...
The expression of specific genes that are regulated by transcription factors and epigenetic modifica...
The expression of specific genes that are regulated by transcription factors and epigenetic modifica...
AbstractThe establishment of DNA methylation patterns requires de novo methylation that occurs predo...
DNA methylation is an epigenetic modification associated with transcriptional repression of promoter...
The phenotypical and functional diversity of mammalian cell types can be attributed to a large exten...
Mammalian DNA methylation patterns are established by two de novo DNA methyltransferases DNMT3A and ...
Mammalian DNA methylation patterns are established by two de novo DNA methyltransferases DNMT3A and ...
Mammalian DNA methylation patterns are established by two de novo DNA methyltransferases DNMT3A and ...
Cytosine methylation is an important epigenetic mark, but how the distinctive patterns of DNA methyl...
Mammalian DNA methylation patterns are established by two de novo DNA methyltransferases, DNMT3A and...
Mammalian DNA methylation patterns are established by two de novo DNA methyltransferases, DNMT3A and...
DNA methylation is an epigenetic modification that is nearly ubiquitous. Eukaryotic DNA methylation ...
DNA methylation is an epigenetic modification that is nearly ubiquitous. Eukaryotic DNA methylation ...
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...
The expression of specific genes that are regulated by transcription factors and epigenetic modifica...
The expression of specific genes that are regulated by transcription factors and epigenetic modifica...
AbstractThe establishment of DNA methylation patterns requires de novo methylation that occurs predo...
DNA methylation is an epigenetic modification associated with transcriptional repression of promoter...
The phenotypical and functional diversity of mammalian cell types can be attributed to a large exten...
Mammalian DNA methylation patterns are established by two de novo DNA methyltransferases DNMT3A and ...
Mammalian DNA methylation patterns are established by two de novo DNA methyltransferases DNMT3A and ...
Mammalian DNA methylation patterns are established by two de novo DNA methyltransferases DNMT3A and ...
Cytosine methylation is an important epigenetic mark, but how the distinctive patterns of DNA methyl...
Mammalian DNA methylation patterns are established by two de novo DNA methyltransferases, DNMT3A and...
Mammalian DNA methylation patterns are established by two de novo DNA methyltransferases, DNMT3A and...
DNA methylation is an epigenetic modification that is nearly ubiquitous. Eukaryotic DNA methylation ...
DNA methylation is an epigenetic modification that is nearly ubiquitous. Eukaryotic DNA methylation ...
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...
The expression of specific genes that are regulated by transcription factors and epigenetic modifica...
The expression of specific genes that are regulated by transcription factors and epigenetic modifica...
AbstractThe establishment of DNA methylation patterns requires de novo methylation that occurs predo...