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Series GSE188523 Query DataSets for GSE188523
Status Public on Apr 15, 2024
Title A critical requirement for IκBα in controlling dormancy in Hematopoietic stem cells via retinoic acid during embryonic development [RNA-seq]
Organism Mus musculus
Experiment type Expression profiling by high throughput sequencing
Summary Hematopoietic Stem Cells (HSCs) originate from the E11.5 aorta-gonads-and mesonephros (AGM) region during development before they migrate to the foetal liver for proliferation and maturation, and finally seed the bone marrow around birth, their final site of residence. In the AGM, HSCs reside within Intra-aortic hematopoietic clusters (IAHC) along with hematopoietic progenitors (HPC). Molecular pathways that determine HSC fate instead of HPCs are still unknown, although inflammatory signalling has been implicated in the development of all blood cells, including NF-κB. Here, we describe a dormant phenotype of LT-HSCs in the IκBα KO. Although IκBα is critical for retaining inactive NF-κB complexes in the cytoplasm, it can regulate stem cell related genes by interacting with the PRC2 complex in the nucleus. Accordingly, we find decreased PRC2 dependent H3K27me3 accumulation at the promoters of PI3K and retinoic acid signalling molecules by cut and tag assay in AGM derived CD31+ cells, which includes HE/IAHC derived from IκBα KO embryos. Furthermore, this regulation of the retinoic acid signalling by IκBα is further confirmed by cut and tag assay for IκBα itself in CD31+ cells of the AGM and more specifically also in sorted LT-HSCs from the E14.5 foetal liver. Over-activation of the retinoic acid/PI3K levels in LT-HSCs of the IκBα KO is evident in their dormant molecular profile. Functionally, IκBα KO LT-HSCs are less proliferative and respond with delayed activation upon transplantation. Overall, we identify nuclear IκBα as an essential player specifically for HSC specification/proliferation from the onset of HSPC emergence in the AGM.
 
Overall design We performed bulk RNA seq with sorted E14.5 LT-HSCs (LSKCD48-CD150+) in order to define HSCs at a molecular level considering 3xWT, 2x IκBα KO and 3x IκBα HET independent biological replicates.
 
Contributor(s) Thambyrajah R, Maqueda M, Fadlullah Z, Proffitt M, Hao N, Guillén Y, Casado-Pelaez M, Herrero-Molinero P, Brujas C, Castelluccio N, González J, Iglesias A, Marruecos L, Ruiz-Herguido C, Esteller M, Mereu E, Lacaud G, Espinosa L, Bigas A
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Submission date Nov 10, 2021
Last update date Apr 15, 2024
Contact name Anna Bigas
E-mail(s) abigas@imim.es
Phone +34933160440
Organization name Institut Hospital del Mar d'Investigacions Mèdiques
Department Cancer Research
Lab Stem Cells and Cancer
Street address Dr. Aiguader 88
City Barcelona
State/province Barcelona
ZIP/Postal code 08003
Country Spain
 
Platforms (1)
GPL13112 Illumina HiSeq 2000 (Mus musculus)
Samples (8)
GSM5684837 LT-HSCs_Ikba_WT_3 [RNA-seq]
GSM5684838 LT-HSCs_Ikba_Het_2 [RNA-seq]
GSM5684839 LT-HSCs_Ikba_Het_3 [RNA-seq]
This SubSeries is part of SuperSeries:
GSE188525 A critical requirement for IκBα in controlling dormancy in Hematopoietic stem cells via retinoic acid during embryonic development
Relations
BioProject PRJNA779271
SRA SRP345390

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Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE188523_RNAseq_All_samples_Raw_counts.txt.gz 506.8 Kb (ftp)(http) TXT
GSE188523_RNAseq_Norm_Counts_Gender_corrected.txt.gz 1.3 Mb (ftp)(http) TXT
SRA Run SelectorHelp
Raw data are available in SRA
Processed data provided as supplementary file

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