DNMT1 is recruited by PCNA and UHRF1 to maintain DNA methylation after replication. UHRF1 recognizes hemimethylated DNA substrates via the SRA domain, but also repressive H3K9me3 histone marks with its TTD. With systematic mutagenesis and functional assays, we could show that chromatin binding further involved UHRF1 PHD binding to unmodified H3R2. These complementation assays clearly demonstrated that the ubiquitin ligase activity of the UHRF1 RING domain is required for maintenance DNA methylation. Mass spectrometry of UHRF1-deficient cells revealed H3K18 as a novel ubiquitination target of UHRF1 in mammalian cells. With bioinformatics and mutational analyses, we identified a ubiquitin interacting motif (UIM) in the N-terminal regulatory d...
Aberrant DNA methylation is often associated with cancer and the formation of tumors; however, the u...
In mammals, repressive histone modifications such as trimethylation of histone H3 Lys9 (H3K9me3), fr...
Stable inheritance of DNA methylation is critical for maintaining differentiated phenotypes in multi...
DNMT1 is recruited by PCNA and UHRF1 to maintain DNA methylation after replication. UHRF1 recognizes...
DNA methylation is a crucial epigenetic modification and functions as a key factor in controlling ge...
The RING E3 ubiquitin ligase UHRF1 controls DNA methylation through its ability to target the mainte...
UHRF1 is a histone- and DNA-binding E3 ubiquitin ligase that functions with DNMT1 to maintain mammal...
The epigenetic inheritance of DNA methylation requires UHRF1, a histone- and DNA-binding RING E3 ubi...
A fundamental challenge in mammalian biology has been elucidating mechanisms linking DNA methylation...
DNA methylation patterns regulate gene expression programs and are maintained through a highly coord...
DNA methylation, catalyzed by DNA methyltransferases (DNMTs), is an epigenetic mark that needs to be...
The ubiquitin-like, containing PHD and RING finger domains protein 1 (UHRF1) is essential for mainte...
Aberrant DNA methylation is often associated with cancer and the formation of tumors; however, the u...
In the eukaryotic genome, DNA and histone modifications regulate chromatin function and mediate basi...
Epigenetic mechanisms such as DNA methylation and histone posttranslational modifications, allow cel...
Aberrant DNA methylation is often associated with cancer and the formation of tumors; however, the u...
In mammals, repressive histone modifications such as trimethylation of histone H3 Lys9 (H3K9me3), fr...
Stable inheritance of DNA methylation is critical for maintaining differentiated phenotypes in multi...
DNMT1 is recruited by PCNA and UHRF1 to maintain DNA methylation after replication. UHRF1 recognizes...
DNA methylation is a crucial epigenetic modification and functions as a key factor in controlling ge...
The RING E3 ubiquitin ligase UHRF1 controls DNA methylation through its ability to target the mainte...
UHRF1 is a histone- and DNA-binding E3 ubiquitin ligase that functions with DNMT1 to maintain mammal...
The epigenetic inheritance of DNA methylation requires UHRF1, a histone- and DNA-binding RING E3 ubi...
A fundamental challenge in mammalian biology has been elucidating mechanisms linking DNA methylation...
DNA methylation patterns regulate gene expression programs and are maintained through a highly coord...
DNA methylation, catalyzed by DNA methyltransferases (DNMTs), is an epigenetic mark that needs to be...
The ubiquitin-like, containing PHD and RING finger domains protein 1 (UHRF1) is essential for mainte...
Aberrant DNA methylation is often associated with cancer and the formation of tumors; however, the u...
In the eukaryotic genome, DNA and histone modifications regulate chromatin function and mediate basi...
Epigenetic mechanisms such as DNA methylation and histone posttranslational modifications, allow cel...
Aberrant DNA methylation is often associated with cancer and the formation of tumors; however, the u...
In mammals, repressive histone modifications such as trimethylation of histone H3 Lys9 (H3K9me3), fr...
Stable inheritance of DNA methylation is critical for maintaining differentiated phenotypes in multi...