Determination of ligation and capture frequencies for NG Capture-C experiment.
收藏NIAID Data Ecosystem2026-03-13 收录
数据链接:
官方服务:
资源简介:
(XLSX)
应用场景:
创建时间:
2022-06-16
相关数据集
Linker histone H1 is required for proper genome folding and coupling DNA methylation with gene expression
We engineered a H1 knockout mutant in Arabidopsis thaliana which shows pleiotropic phenotypes. Using High-throughput Chromosome Conformation Capture (Hi-C), we found that H1 depletion dampens inter- a
NIAID Data Ecosystem80
A mock community containing 9 viruses and four bacterial species Raw sequence reads. Mock-virome and mock bacteriome
We optimised and validated a method that allows for high throughput virome analysis. For that we evaluated the quantitative effect of homogenisation, centrifugation, filtration, chloroform treatment a
NIAID Data Ecosystem60
Modified Hi-C reveals distinct chromatin architecture in endosperm and leaf of Arabidopsis. Modified Hi-C reveals distinct chromatin architecture in endosperm and leaf of Arabidopsis
Higher-order chromatin structure undergoes dramatic changes in response to various developmental and environmental signals, wherein distinct cell types posses specific chromatin organization. High thr
NIAID Data Ecosystem60
MC-4C: Enhancer hubs and loop collisions identified from single-allele topologies
Chromatin folding is increasingly recognized as a regulator of genomic processes such as gene activity. Chromosome conformation capture (3C) methods have been developed to unravel genome topology thro
NIAID Data Ecosystem60
Chromatin structure dynamics of hoxa13a, hoxa13b and hoxd13a loci during zebrafish development.
We designed 4C-Seq experiments for hoxa13a, hoxa13b and hoxd13a promoters in three developmental stages in zebrafish embryos: 24, 48 and 60 hpf. 4C-seq samples for three different hox13 genes promoter
NIAID Data Ecosystem60



