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Series GSE152555 Query DataSets for GSE152555
Status Public on Aug 11, 2020
Title Resolving fate and transcriptome of hematopoietic stem cell clones [LT_ST_HSC]
Organism Mus musculus
Experiment type Expression profiling by high throughput sequencing
Summary Hematopoietic stem cell (HSC) differentiation into mature lineages has been studied under physiological conditions in vivo by genetic barcoding-driven lineage tracing. HSC clones differ in output (differentiation-inactive versus differentiation-active), and in fates (multilineage versus lineage-restricted). Single-cell sequencing data revealed transcriptome diversity of HSC and progenitors, and suggested differentiation pathways. However, molecular hallmarks of functionally distinct HSC clones have not been resolved because existing lineage tracing experiments did not provide transcriptomes, and single cell RNA sequencing lacked information on precursor-product relationships, and hence fate. To close this gap, here we introduce PolyloxExpress, a Cre recombinase-dependent DNA substrate for in situ barcoding in mice that is expressed as mRNA. PolyloxExpress barcoding allows parallel readout of clonal HSC fates (via comparison of barcodes in HSC and mature lineages), and transcriptomes (via single-cell RNA sequencing and barcode matching). Analysing a total of 91 individual HSC clones, we show that differentiation-inactive versus differentiation-active HSC clones reside in different regions of the transcriptional landscape. Inactive HSC clones are closer to the origin of the transcriptional trajectory, yet are proliferatively not more quiescent than active clones. Multilineage versus myelo-erythroid fate-restricted HSC clones show very few transcriptional differences at the HSC stage, yet pronounced fate-specific profiles at the multipotent progenitor stage. Projecting HSC clones with defined fates onto transcriptional landscapes provides a basis for future studies into the molecular determinants for stem cell fate.
 
Overall design Phenotypic long-term (LT) (Lin-Kit+Sca1+CD150+CD48-) and short-term (ST) (Lin-Kit+Sca1+CD150-CD48-) HSC were sorted and transcriptomes of each stem cell were profiled using single-cell RNA-sequencing. Their gene expression profiles were then used to characterize every HSC profiled in the PolyloxExpress experiments.
 
Contributor(s) Fanti A, Busch K, Wang X, Rodewald H
Citation(s) 32783885
Submission date Jun 16, 2020
Last update date Nov 10, 2020
Contact name Xi Wang
Organization name Nanjing Medical University
Street address Longmian Avenue 101, Jiangning District
City Nanjing
ZIP/Postal code 21116
Country China
 
Platforms (1)
GPL21103 Illumina HiSeq 4000 (Mus musculus)
Samples (4)
GSM4618173 mouse_1.LT_HSC
GSM4618174 mouse_1.ST_HSC
GSM4618175 mouse_2.LT_HSC
This SubSeries is part of SuperSeries:
GSE152557 Resolving fate and transcriptome of hematopoietic stem cell clones
Relations
BioProject PRJNA639717
SRA SRP267471

Download family Format
SOFT formatted family file(s) SOFTHelp
MINiML formatted family file(s) MINiMLHelp
Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE152555_RAW.tar 97.1 Mb (http)(custom) TAR (of MTX, TSV)
SRA Run SelectorHelp
Raw data are available in SRA
Processed data provided as supplementary file

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