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An atlas of dynamic chromatin landscapes in mouse fetal development.

Authors :
Gorkin, David U
Gorkin, David U
Barozzi, Iros
Zhao, Yuan
Zhang, Yanxiao
Huang, Hui
Lee, Ah Young
Li, Bin
Chiou, Joshua
Wildberg, Andre
Ding, Bo
Zhang, Bo
Wang, Mengchi
Strattan, J Seth
Davidson, Jean M
Qiu, Yunjiang
Afzal, Veena
Akiyama, Jennifer A
Plajzer-Frick, Ingrid
Novak, Catherine S
Kato, Momoe
Garvin, Tyler H
Pham, Quan T
Harrington, Anne N
Mannion, Brandon J
Lee, Elizabeth A
Fukuda-Yuzawa, Yoko
He, Yupeng
Preissl, Sebastian
Chee, Sora
Han, Jee Yun
Williams, Brian A
Trout, Diane
Amrhein, Henry
Yang, Hongbo
Cherry, J Michael
Wang, Wei
Gaulton, Kyle
Ecker, Joseph R
Shen, Yin
Dickel, Diane E
Visel, Axel
Pennacchio, Len A
Ren, Bing
Gorkin, David U
Gorkin, David U
Barozzi, Iros
Zhao, Yuan
Zhang, Yanxiao
Huang, Hui
Lee, Ah Young
Li, Bin
Chiou, Joshua
Wildberg, Andre
Ding, Bo
Zhang, Bo
Wang, Mengchi
Strattan, J Seth
Davidson, Jean M
Qiu, Yunjiang
Afzal, Veena
Akiyama, Jennifer A
Plajzer-Frick, Ingrid
Novak, Catherine S
Kato, Momoe
Garvin, Tyler H
Pham, Quan T
Harrington, Anne N
Mannion, Brandon J
Lee, Elizabeth A
Fukuda-Yuzawa, Yoko
He, Yupeng
Preissl, Sebastian
Chee, Sora
Han, Jee Yun
Williams, Brian A
Trout, Diane
Amrhein, Henry
Yang, Hongbo
Cherry, J Michael
Wang, Wei
Gaulton, Kyle
Ecker, Joseph R
Shen, Yin
Dickel, Diane E
Visel, Axel
Pennacchio, Len A
Ren, Bing
Source :
Nature; vol 583, iss 7818, 744-751; 0028-0836
Publication Year :
2020

Abstract

The Encyclopedia of DNA Elements (ENCODE) project has established a genomic resource for mammalian development, profiling a diverse panel of mouse tissues at 8 developmental stages from 10.5 days after conception until birth, including transcriptomes, methylomes and chromatin states. Here we systematically examined the state and accessibility of chromatin in the developing mouse fetus. In total we performed 1,128 chromatin immunoprecipitation with sequencing (ChIP-seq) assays for histone modifications and 132 assay for transposase-accessible chromatin using sequencing (ATAC-seq) assays for chromatin accessibility across 72 distinct tissue-stages. We used integrative analysis to develop a unified set of chromatin state annotations, infer the identities of dynamic enhancers and key transcriptional regulators, and characterize the relationship between chromatin state and accessibility during developmental gene regulation. We also leveraged these data to link enhancers to putative target genes and demonstrate tissue-specific enrichments of sequence variants associated with disease in humans. The mouse ENCODE data sets provide a compendium of resources for biomedical researchers and achieve, to our knowledge, the most comprehensive view of chromatin dynamics during mammalian fetal development to date.

Details

Database :
OAIster
Journal :
Nature; vol 583, iss 7818, 744-751; 0028-0836
Notes :
Nature vol 583, iss 7818, 744-751 0028-0836
Publication Type :
Electronic Resource
Accession number :
edsoai.on1287298218
Document Type :
Electronic Resource