The role of transcriptional activator GATA-1 at human -globin HS2
Author:
Publisher
Oxford University Press (OUP)
Subject
Genetics
Link
http://academic.oup.com/nar/article-pdf/36/14/4521/7175830/gkn368.pdf
Reference36 articles.
1. Locus control regions
2. On a chromosome far, far away: LCRs and gene expression
3. Cooperative activities of hematopoietic regulators recruit RNA polymerase II to a tissue-specific chromatin domain
4. Chromatin domain activation via GATA-1 utilization of a small subset of dispersed GATA motifs within a broad chromosomal region
5. Nucleosome and transcription activator antagonism at human β-globin locus control region DNase I hypersensitive sites
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2. Long noncoding RNAs transcribed downstream of the human β-globin locus regulate β-globin gene expression;The Journal of Biochemistry;2021-12-08
3. Histone H3K4me1 and H3K27ac play roles in nucleosome eviction and eRNA transcription, respectively, at enhancers;The FASEB Journal;2021-07-26
4. Multiple CTCF sites cooperate with each other to maintain a TAD for enhancer–promoter interaction in the β‐globin locus;The FASEB Journal;2021-07-10
5. Histone H3K4me1 strongly activates the DNase I hypersensitive sites in super-enhancers than those in typical enhancers;Bioscience Reports;2021-07
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