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E-GEOD-66378 SRP055672, GSE66378 other Homo sapiens

Disruptions of Topological Chromatin Domains Causes Pathogenic Rewiring of Gene-Enhancer Interactions [4C-Seq-human]

·发布 2015年5月8日 ·更新 2015年5月22日
6
样本数
6
实验数
实验描述

Mammalian genomes are organized into megabase-scale topologically associated domains (TADs) that have been proposed to represent large regulatory units. Here we demonstrate that disruption of TADs can cause rewiring of long-range regulatory architecture and result in pathogenic phenotypes. We show that distinct human limb malformations are caused by deletions, inversions, or duplications altering the structure of the TAD-spanning WNT6/IHH/EPHA4/PAX3 locus. Using CRISPR/Cas genome editing, we generated mice with corresponding rearrangements. Both in mouse limb tissue and patient-derived fibroblasts, disease-relevant structural changes cause ectopic interactions between promoters and non-coding DNA, and a cluster of limb enhancers normally associated with Epha4 is misplaced relative to TAD boundaries and drives ectopic limb expression of another gene in the locus. Our results demonstrate the functional importance of TADs for orchestrating gene expression via genome architecture and indicate criteria for predicting the pathogenicity of human structural variants, particularly in non-coding regions of the human genome. Circular Chromosome Conformation Capture (4C seq) at the WNT6/IHH/EPHA4/PAX3 locus in human adult fibroblasts (HAF) of adult patients and controls

样本属性
1st restriction enzymes
BglII, HindIII
2nd restriction enzymes
Csp6I, DpnII
age
adult
genotype
control, deletion B1, duplication F2, duplication P1
organism
Homo sapiens
organism part
fibroblasts
viewpoint
IHH, PAX3, WNT6
实验信息
登记号
E-GEOD-66378
GEO 编号
SRP055672, GSE66378
实验类型
other
物种
Homo sapiens
发布日期
2015年5月8日
更新日期
2015年5月22日
提交者
Stefan Mundlos、 Darío G Lupiáñez
分析服务
分析服务

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