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Series GSE158796 Query DataSets for GSE158796
Status Public on May 27, 2021
Title Disruption of a GATA2, TAL1, ERG regulatory circuit promotes erythroid transition in healthy and leukemic stem cells [scRNA-seq]
Organism Homo sapiens
Experiment type Expression profiling by high throughput sequencing
Summary Blood production is maintained through adult life by haematopoietic stem cells which undergo a process of differentiation and increasing lineage restriction to produce all the terminal blood types. The cell type transitions within this process are tightly controlled, and loss of control can lead to inappropriate proliferation and leukemic transformation. We and others have previously described seven transcriptional regulators (heptad; LYL1, TAL1, LMO2, FLI1, ERG, GATA2, RUNX1) which bind key haematopoietic genes in normal human CD34+ haematopoietic stem and progenitor cells (HSPCs). Heptad factors form a densely interconnected circuit by binding combinatorically at their own, and each other’s, regulatory elements. However, the precise role of the heptad throughout normal and leukemic haematopoiesis, including whether all seven factors act together in single cells, and whether heptad perturbation can influence cell fate decisions remain unclear. In this study we integrate bulk and single cell data in normal human HSPCs and leukemic cells and find that chromatin conformation at key heptad regulatory elements is predictive of cell identity in normal and leukemic progenitors. The interconnected heptad circuit identified in normal HSPCs persists in AML, but single cell transcriptomics suggest that specific heptad sub-circuits exist in individual cells, and we show that GATA2, TAL1 and ERG play key roles in regulating the stem to erythroid transition in both normal and leukemic contexts.
 
Overall design Single cell RNAseq of unperturbed ME-1 AML cells (DSMZ cat# ACC 537)
 
Contributor(s) Thoms J, Pimanda J, Zanini F, Seneviratne J
Citation(s) 34075404
Submission date Sep 30, 2020
Last update date Aug 27, 2021
Contact name Julie Thoms
E-mail(s) j.thoms@unsw.edu.au
Organization name UNSW Sydney
Department Adult Cancer Program
Street address Level 2, C25 Lowy Cancer Research Centre, UNSW Sydney, High St
City Randwick
State/province NSW
ZIP/Postal code 2052
Country Australia
 
Platforms (1)
GPL18573 Illumina NextSeq 500 (Homo sapiens)
Samples (1)
GSM4810562 ME-1 scRNAseq
This SubSeries is part of SuperSeries:
GSE158797 Disruption of a GATA2, TAL1, ERG regulatory circuit promotes erythroid transition in healthy and leukemic stem cells
Relations
BioProject PRJNA666570
SRA SRP285885

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Supplementary file Size Download File type/resource
GSE158796_RAW.tar 57.2 Mb (http)(custom) TAR (of LOOM, TSV)
SRA Run SelectorHelp
Raw data are available in SRA
Processed data provided as supplementary file

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