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Series GSE172333 Query DataSets for GSE172333
Status Public on May 05, 2024
Title A myeloid maturation program initiated by nucleotide depletion during S phase [RNA-Seq]
Organisms Homo sapiens; Mus musculus
Experiment type Expression profiling by high throughput sequencing
Summary Certain cancers, such as acute myeloid leukemia (AML), are caused by malignant stem cells that fail maturation. We sought to mechanistically understand how metabolism might regulate cell fate decisions and to identify metabolic differentiation agents that might be leveraged therapeutically.  We find that nucleotide – purine, pyrimidine, and deoxynucleotide – depletion leads to AML differentiation by way of replication stress. Modulation of nucleotide pools leads to transcriptional reprogramming, epigenetic remodeling, and initiation of differentiation which is dependent on the myeloid regulating transcription-factor PU.1. By single-cell RNA sequencing and microscopy, we find that reprogramming downstream of nucleotide depletion occurs as cells undergo replication stress and that the cell fate decision is initiated prior to completion of the cell cycle. Together, these findings suggest that nucleotide metabolism is a critical determinant of hematopoietic progenitor cell fate, clarify the coordination of the fate decision with the cell cycle, and expand upon the class of inhibitors that can be developed or repurposed as novel differentiation therapy.
 
Overall design Cell lines were treated with vehicle or drug for the indicated times, RNA was extracted, and RNA sequencing was performed.
 
Contributor(s) Do BT, Hsu PP, Vermeulen SY, Sykes DB, Vander Heiden MG
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Submission date Apr 19, 2021
Last update date May 05, 2024
Contact name Brian Do
E-mail(s) bdo311@gmail.com
Organization name MIT
Department Biology
Lab Vander Heiden
Street address 500 Main St
City Cambridge
State/province MA
ZIP/Postal code 02139
Country USA
 
Platforms (4)
GPL13112 Illumina HiSeq 2000 (Mus musculus)
GPL18573 Illumina NextSeq 500 (Homo sapiens)
GPL19057 Illumina NextSeq 500 (Mus musculus)
Samples (158)
GSM5252676 ER-Hoxa9_BRQ_0h_rep1
GSM5252677 ER-Hoxa9_BRQ_0h_rep2
GSM5252678 ER-Hoxa9_BRQ_2h_rep1
This SubSeries is part of SuperSeries:
GSE172335 Nucleotide depletion promotes cell fate transitions by inducing DNA replication stress
Relations
BioProject PRJNA722986
SRA SRP315357

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Supplementary file Size Download File type/resource
GSE172333_240316_thp1_early_hu_vs_unt_raw_counts.csv.gz 5.0 Mb (ftp)(http) CSV
GSE172333_633_brq_raw_counts.tsv.gz 4.7 Mb (ftp)(http) TSV
GSE172333_633_kd_rnaseq_raw_counts.tsv.gz 8.9 Mb (ftp)(http) TSV
GSE172333_ER-Hoxa9_brq_raw_counts.tsv.gz 4.7 Mb (ftp)(http) TSV
GSE172333_ER-Hoxa9_sgspi1_raw_counts.tsv.gz 8.9 Mb (ftp)(http) TSV
GSE172333_k562_brq_sggata1_raw_counts.tsv.gz 5.3 Mb (ftp)(http) TSV
GSE172333_k562_sgbcr_raw_counts.tsv.gz 5.3 Mb (ftp)(http) TSV
GSE172333_thp1_kd_raw_counts.tsv.gz 5.4 Mb (ftp)(http) TSV
GSE172333_thp1_medium_raw_counts.tsv.gz 5.5 Mb (ftp)(http) TSV
GSE172333_thp1_raw_counts.tsv.gz 10.6 Mb (ftp)(http) TSV
GSE172333_thp1_short_raw_counts.tsv.gz 5.7 Mb (ftp)(http) TSV
GSE172333_u937_raw_counts.tsv.gz 8.9 Mb (ftp)(http) TSV
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Processed data are available on Series record

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