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The mismatch-repair proteins MSH2 and MSH6 interact with the imprinting control regions through the ZFP57-KAP1 complex
PubMed Full text in PMC Similar studies
The mismatch-repair proteins MSH2 and MSH6 interact with the imprinting control regions through the ZFP57-KAP1 complex (RRBS)
The mismatch-repair proteins MSH2 and MSH6 interact with the imprinting control regions through the ZFP57-KAP1 complex (ChIP-Seq)
ZFP57 recognizes multiple and closely spaced sequence motif variants to maintain repressive epigenetic marks in mouse embryonic stem cells
PubMed Full text in PMC Similar studies SRA Run Selector
ZFP57/KAP1 recognize a methylated hexanucleotide to affect the chromatin and DNA methylation of imprinting control regions in embryonic stem cells
RNA-seq and expression profile of WT and ZFP57 KO ES cells
ChIP-Seq of HA tagged ZFP57 and KAP1 in mouse ES cells
Allele-specific binding of ZFP57 in the regulation of imprinted and mono-allelic expression
Methylation for adult blood and cord blood samples
PubMed Full text in PMC Similar studies Analyze with GEO2R
Multi-locus imprinting disturbances in a family harboring a ZFP57 truncation
Characterization of imprinted methylation using the Illumina Infinium MethylationEPIC array platform
ZFP57 maintains the parent-of-origin-specific expression of the imprinted genes and differentially affects non-imprinted targets in mouse embryonic stem cells
ZFP57 maintains the parent-of-origin-specific expression of the imprinted genes and differentially affects non-imprinted targets in mouse embryonic stem cells (RNA-seq)
ZFP57 maintains the parent-of-origin-specific expression of the imprinted genes and differentially affects non-imprinted targets in mouse embryonic stem cells (ChIP-seq)
ZFP57 maintains the parent-of-origin-specific expression of the imprinted genes and differentially affects non-imprinted targets in mouse embryonic stem cells (BS-seq and RRBS)
DNA sequence and chromatin modifiers determine epigenetic bistability at imprinting control regions
Epigenetic regulation of unique genes and repetitive elements by KRAB zinc finger protein ZFP57 in embryonic stem cells
Individual retrotransposon integrants are differentially controlled by KZFP/KAP1-dependent histone methylation, DNA methylation and TET-mediated hydroxymethylation in naïve embryonic stem cells
Zfp57 inactivation illustrates the relationship between DNA methylation and imprinted gene expression in mouse neural precursor cells
Epigenetic profiling at mouse imprinted gene clusters
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