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CTCF_control
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2018-01-25
相关数据集
Biochemical properties of chromatin domains define their compartmentalization [I]. Biochemical properties of chromatin domains define their compartmentalization [I]
Chromatin three-dimensional (3D) organization inside the cell nucleus determines the separation of euchromatin and heterochromatin domains. Their segregation results in the definition of active and in
NIAID Data Ecosystem60
The molecular basis of lamin- chromatin interactions [SAMMY-Seq]
Lamins are the main constituents of the nuclear lamina, a fibrillar layer underlying the inner nuclear membrane. The nuclear lamina governs chromatinorganization through lamina-associated domainswithi
NIAID Data Ecosystem30
Additional file 4 of Characterizing chromatin interactions of regulatory elements and nucleosome positions, using Hi-C, Micro-C, and promoter capture Micro-C
Additional file 4: Table S3. Chromatin loops identified from this study. (A) summary table of loops called using Mustache (B) summary table of loops called using SIP (C) summary table of loops called
Figshare2023-04-13 更新20
Additional file 2 of SpectralTAD: an R package for defining a hierarchy of topologically associated domains using spectral clustering
Additional file 2: Table S1. Summary of gaps. The percentage of gaps is summarized for all chromosomes at 10 kb, 25 kb, and 50 kb resolution using raw GM12878 data [3]. Gaps are separated based on whe
Figshare2020-07-20 更新40
Clustering of strong replicators associated with active promoters is sufficient to establish an early-replicating domain
Clustering of strong replicators associated with active promoter are sufficient to establish an early-replicating domain Repli-Seq: A Wt DT40 chicken cell line and one clonal homozygous cell line cont
NIAID Data Ecosystem20



