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资源简介:
compare the difference of 3D structure for six kinds of cell types in mouse
应用场景:
创建时间:
2016-08-14
相关数据集
Diurnal 3D genome organization remodeling orchestrates rhythmic gene expression in rice [ChIA-PET]. Diurnal 3D genome organization remodeling orchestrates rhythmic gene expression in rice [ChIA-PET]
Genome-wide rhythmic occupancy of RNA polymerase II (RNAPII) is highly coordinated with rhythmic genes expression. Rhythmic RNAPII binding dynamically modulates diurnal 3D genome architecture remodeli
NIAID Data Ecosystem70
Additional file 4 of Multiplexed capture of spatial configuration and temporal dynamics of locus-specific 3D chromatin by biotinylated dCas9
Additional file 4:Table S3. List of identified locus-specific chromatin interactions at β-globin LCR. The list of locus-specific inter- and intra-chromosomal DNA interactions identified by multiplexed
NIAID Data Ecosystem40
Long-distance association of topological boundaries through nuclear condensates (GRO-Seq). Long-distance association of topological boundaries through nuclear condensates (GRO-Seq)
Chromatin is partitioned into distinct topological domains in an activity-dependent manner, with topological boundaries limiting the interaction between adjacent domains. Recent studies support the co
NIAID Data Ecosystem10
Comparative 3D Genome Architecture in Vertebrates (RNA-Seq). Comparative 3D Genome Architecture in Vertebrates (RNA-Seq)
Three-dimensional genome architecture influences the regulation of essential nuclear processes, such as gene transcription. However, how 3D genome architecture is affected by evolutionary forces withi
NIAID Data Ecosystem60
Cohesin and CTCF control chromosomal contact dynamics in living cells. Cohesin and CTCF control chromosomal contact dynamics in living cells
This SuperSeries is composed of the SubSeries listed below. Overall design: Refer to individual Series
NIAID Data Ecosystem30



