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Transposase-accessible chromatin with high-throughput sequencing for purified neonatal aCMs and vCMs
PubMed Full text in PMC Similar studies
Regulation of mouse chamber selective enhancers
Chamber selective enhancers identified in vivo by AAV-MPRA
Dense, systematic mutagenesis to identify the features required for CSEs
Next-generation sequencing facilitates quantitative analysis of atrial and ventricular cardiomyocytes transcriptomes
Generate 3D genome database for atrial and ventricles and using chamber selective chromatin loops link a subset of CSEs to target genes
BioChIP-seq analysis of atrial and ventricular cardiomyocytes
Cardiac transcription factors in HL-1 cells: gene expression and genome binding profiling
PubMed Full text in PMC Similar studies Analyze with GEO2RSRA Run Selector
A reference map of cardiac transcription factor chromatin occupancy identifies dynamic and conserved transcriptional enhancers
PubMed Full text in PMC Similar studies SRA Run Selector
Characterization the crosstalk between P300 enhancers and 3D genome in murine cardiomyocyte development and maturation by H3K27ac HiChIP.
Characterization of maturational enhancer activity by massively parallel reporter assay [amplicon-Seq]
Characterization of dynamic p300 enhancers in murine cardiomyocyte development
Characterization of dynamic p300 enhancers in murine cardiomyocyte development [RNA-seq]
Characterization of dynamic p300 enhancers in murine cardiomyocyte development [ChIP-seq]
Characterization of dynamic p300 enhancers in murine cardiomyocyte development [HiC]
Genome-wide chromatin state in non-failing and dilated cardiomyaphty human left ventricles
Genome-wide chromatin state in non-failing and dilated cardiomyaphty human left ventricles [PLAC-seq]
Genome-wide chromatin state in non-failing and dilated cardiomyaphty human left ventricles [ChIP-Seq]
Temporal Analyses of Cardiac Chromatin Accessibility, DNA Methylation and Epigenomic Structure Reveal Locus-Specific Regulation
Temporal Analyses of Cardiac Chromatin Accessibility, DNA Methylation and Epigenomic Structure Reveal Locus-Specific Regulation [RRBS]
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