[PDF][PDF] Integrative analysis of drug response and clinical outcome in acute myeloid leukemia

D Bottomly, N Long, AR Schultz, SE Kurtz, CE Tognon… - Cancer cell, 2022 - cell.com
D Bottomly, N Long, AR Schultz, SE Kurtz, CE Tognon, K Johnson, M Abel, A Agarwal…
Cancer cell, 2022cell.com
Acute myeloid leukemia (AML) is a cancer of myeloid-lineage cells with limited therapeutic
options. We previously combined ex vivo drug sensitivity with genomic, transcriptomic, and
clinical annotations for a large cohort of AML patients, which facilitated discovery of
functional genomic correlates. Here, we present a dataset that has been harmonized with
our initial report to yield a cumulative cohort of 805 patients (942 specimens). We show
strong cross-cohort concordance and identify features of drug response. Further …
Summary
Acute myeloid leukemia (AML) is a cancer of myeloid-lineage cells with limited therapeutic options. We previously combined ex vivo drug sensitivity with genomic, transcriptomic, and clinical annotations for a large cohort of AML patients, which facilitated discovery of functional genomic correlates. Here, we present a dataset that has been harmonized with our initial report to yield a cumulative cohort of 805 patients (942 specimens). We show strong cross-cohort concordance and identify features of drug response. Further, deconvoluting transcriptomic data shows that drug sensitivity is governed broadly by AML cell differentiation state, sometimes conditionally affecting other correlates of response. Finally, modeling of clinical outcome reveals a single gene, PEAR1, to be among the strongest predictors of patient survival, especially for young patients. Collectively, this report expands a large functional genomic resource, offers avenues for mechanistic exploration and drug development, and reveals tools for predicting outcome in AML.
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