[PDF][PDF] Prospective isolation and characterization of genetically and functionally distinct AML subclones

B de Boer, J Prick, MG Pruis, P Keane, MR Imperato… - Cancer cell, 2018 - cell.com
B de Boer, J Prick, MG Pruis, P Keane, MR Imperato, J Jaques, AZ Brouwers-Vos…
Cancer cell, 2018cell.com
Intra-tumor heterogeneity caused by clonal evolution is a major problem in cancer treatment.
To address this problem, we performed label-free quantitative proteomics on primary acute
myeloid leukemia (AML) samples. We identified 50 leukemia-enriched plasma membrane
proteins enabling the prospective isolation of genetically distinct subclones from individual
AML patients. Subclones differed in their regulatory phenotype, drug sensitivity, growth, and
engraftment behavior, as determined by RNA sequencing, DNase I hypersensitive site …
Summary
Intra-tumor heterogeneity caused by clonal evolution is a major problem in cancer treatment. To address this problem, we performed label-free quantitative proteomics on primary acute myeloid leukemia (AML) samples. We identified 50 leukemia-enriched plasma membrane proteins enabling the prospective isolation of genetically distinct subclones from individual AML patients. Subclones differed in their regulatory phenotype, drug sensitivity, growth, and engraftment behavior, as determined by RNA sequencing, DNase I hypersensitive site mapping, transcription factor occupancy analysis, in vitro culture, and xenograft transplantation. Finally, we show that these markers can be used to identify and longitudinally track distinct leukemic clones in patients in routine diagnostics. Our study describes a strategy for a major improvement in stratifying cancer diagnosis and treatment.
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