RRC ID 77352
Author Li D, Zhao XY, Zhou S, Hu Q, Wu F, Lee HY.
Title Multidimensional profiling reveals GATA1-modulated stage-specific chromatin states and functional associations during human erythropoiesis.
Journal Nucleic Acids Res
Abstract Mammalian erythroid development can be divided into three stages: hematopoietic stem and progenitor cell (HSPC), erythroid progenitor (Ery-Pro), and erythroid precursor (Ery-Pre). However, the mechanisms by which the 3D genome changes to establish the stage-specific transcription programs that are critical for erythropoiesis remain unclear. Here, we analyze the chromatin landscape at multiple levels in defined populations from primary human erythroid culture. While compartments and topologically associating domains remain largely unchanged, ∼50% of H3K27Ac-marked enhancers are dynamic in HSPC versus Ery-Pre. The enhancer anchors of enhancer-promoter loops are enriched for occupancy of respective stage-specific transcription factors (TFs), indicating these TFs orchestrate the enhancer connectome rewiring. The master TF of erythropoiesis, GATA1, is found to occupy most erythroid gene promoters at the Ery-Pro stage, and mediate conspicuous local rewiring through acquiring binding at the distal regions in Ery-Pre, promoting productive erythroid transcription output. Knocking out GATA1 binding sites precisely abrogates local rewiring and corresponding gene expression. Interestingly, knocking down GATA1 can transiently revert the cell state to an earlier stage and prolong the window of progenitor state. This study reveals mechanistic insights underlying chromatin rearrangements during development by integrating multidimensional chromatin landscape analyses to associate with transcription output and cellular states.
Volume 51(13)
Pages 6634-6653
Published 2023-7-21
DOI 10.1093/nar/gkad468
PII 7186996
PMID 37254808
PMC PMC10359633
MeSH Animals Cell Differentiation Chromatin* / genetics Erythropoiesis* GATA1 Transcription Factor* / genetics GATA1 Transcription Factor* / metabolism Humans Regulatory Sequences, Nucleic Acid Transcription Factors / genetics
IF 11.502
Resource
Human and Animal Cells HUDEP-1(RCB4556)