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HiC_ERG on 3D genome organization
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创建时间:
2020-07-06
相关数据集
Genome-wide stability of DNA replication program in single mammalian cells. Genome-wide stability of DNA replication program in single mammalian cells
We report the establishment of a single-cell DNA replication sequencing method, scRepli-seq, which is a simple genome-wide methodology that measures copy number differences between replicated and unre
NIAID Data Ecosystem40
3D genome organization during TGFB-induced transcription requires nuclear microRNA and G-quadruplexes [HICHIP_seq]
Chromatin is the physiological template for all biological processes in the eukaryotic cell nucleus. In addition, the structure of chromatin is intrinsically related to its function. Thus, studying th
NIAID Data Ecosystem20
3D genome organization during TGFB-induced transcription requires nuclear microRNA and G-quadruplexes [RNA-Seq]
Chromatin is the physiological template for all biological processes in the eukaryotic cell nucleus. In addition, the structure of chromatin is intrinsically related to its function. Thus, studying th
NIAID Data Ecosystem10
Regulation of 3D genome organization, transcription and histone H3K9me2 by histone H3K9 methyltransferases [HiC]
Histone H3 lysine 9 dimethylation (H3K9me2) is a highly conserved silencing epigenetic mark. Chromatin marked with H3K9me2 forms large domains in mammalian cells and overlaps well with lamina-associat
NIAID Data Ecosystem30
Condensin-mediated chromosome folding and internal telomeres drive dicentric severing by cytokinesis
HiC study of dicentric chromosomes in Saccharomyces cerevisiae
NIAID Data Ecosystem10



