Single-cell transcriptomics uncovers distinct molecular signatures of stem cells in chronic myeloid leukemia

Basic information
Cell
2,289

Technology
Smart-Seq2
Omics
scRNA-seq
Source
Bone Marrow

Dataset ID
28504724
Platform
Illumina HiSeq 4000,HiSeq 2000
Species
Human
Disease
Chronic myeloid leukemia (CML)
Age range
20 - 74
Update date
2017-05-15
Summary

Recent advances in single-cell transcriptomics are ideally placed to unravel intratumoral heterogeneity and selective resistance of cancer stem cell (SC) subpopulations to molecularly targeted cancer therapies. However, current single-cell RNA-sequencing approaches lack the sensitivity required to reliably detect somatic mutations. We developed a method that combines high-sensitivity mutation detection with whole-transcriptome analysis of the same single cell. We applied this technique to analyze more than 2,000 SCs from patients with chronic myeloid leukemia (CML) throughout the disease course, revealing heterogeneity of CML-SCs, including the identification of a subgroup of CML-SCs with a distinct molecular signature that selectively persisted during prolonged therapy. Analysis of nonleukemic SCs from patients with CML also provided new insights into cell-extrinsic disruption of hematopoiesis in CML associated with clinical outcome. Furthermore, we used this single-cell approach to identify a blast-crisis-specific SC population, which was also present in a subclone of CML-SCs during the chronic phase in a patient who subsequently developed blast crisis. This approach, which might be broadly applied to any malignancy, illustrates how single-cell analysis can identify subpopulations of therapy-resistant SCs that are not apparent through cell-population analysis.

Overall design

overall_design too long too uplode

Contributors

Alice Giustacchini 1 2, Supat Thongjuea 1 2, Nikolaos Barkas 1 2, Petter S Woll 2, Benjamin J Povinelli 1 2, Christopher A G Booth 1 2, Paul Sopp 1, Ruggiero Norfo 1 2, Alba Rodriguez-Meira 1 2, Neil Ashley 1 2, Lauren Jamieson 1 2, Paresh Vyas 1, Kristina Anderson 3, Åsa Segerstolpe 4 5, Hong Qian 6, Ulla Olsson-Strömberg 7, Satu Mustjoki 8, Rickard Sandberg 4 9, Sten Eirik W Jacobsen 1 2 4 6 10, Adam J Mead 1 2 11

Contact

To be supplemented.

snRNA-Seq
Sample nameSample titleDiseaseGenderAgeSourceTreatmentTechnologyPlatformOmicsSample IDDataset IDAction
No data available