Amino acid stress response genes promote L-asparaginase resistance in pediatric acute lymphoblastic leukemia

Author:

Ferguson Daniel C.12,McCorkle J. Robert12ORCID,Barnett Kelly R.12,Bonten Erik J.12,Bergeron Brennan P.123ORCID,Bhattarai Kashi Raj12,Yang Wenjian12ORCID,Smith Colton12,Hansen Baranda S.4,Bajpai Richa4,Dong Qian12,Autry Robert J.12,Gocho Yoshihiro12,Diedrich Jonathan D.12,Crews Kristine R.12ORCID,Pruett-Miller Shondra M.4ORCID,Roberts Kathryn G.15ORCID,Stock Wendy6,Mullighan Charles G.157ORCID,Inaba Hiroto17,Jeha Sima17,Pui Ching-Hon157ORCID,Yang Jun J.127,Relling Mary V.12ORCID,Evans William E.12,Savic Daniel12

Affiliation:

1. 1Hematological Malignancies Program and Center for Precision Medicine in Leukemia,

2. 2Department of Pharmaceutical Sciences,

3. 3Graduate School of Biomedical Sciences,

4. 4Department of Cell and Molecular Biology and Center for Advanced Genome Engineering, and

5. 5Department of Pathology, St. Jude Children’s Research Hospital, Memphis, TN;

6. 6Hematopoiesis and Hematological Malignancies Program, University of Chicago, Chicago, IL; and

7. 7Department of Oncology, St. Jude Children’s Research Hospital, Memphis, TN

Abstract

AbstractUnderstanding the genomic and epigenetic mechanisms of drug resistance in pediatric acute lymphoblastic leukemia (ALL) is critical for further improvements in treatment outcomes. The role of transcriptomic response in conferring resistance to l-asparaginase (LASP) is poorly understood beyond asparagine synthetase (ASNS). We defined reproducible LASP response genes in LASP-resistant and LASP-sensitive ALL cell lines as well as primary leukemia samples from newly diagnosed patients. Defining target genes of the amino acid stress response-related transcription factor activating transcription factor 4 (ATF4) in ALL cell lines using chromatin immunoprecipitation sequencing (ChIP-seq) revealed 45% of genes that changed expression after LASP treatment were direct targets of the ATF4 transcription factor, and 34% of these genes harbored LASP-responsive ATF4 promoter binding events. SLC7A11 was found to be a response gene in cell lines and patient samples as well as a direct target of ATF4. SLC7A11 was also one of only 2.4% of LASP response genes with basal level gene expression that also correlated with LASP ex vivo resistance in primary leukemia cells. Experiments using chemical inhibition of SLC7A11 with sulfasalazine, gene overexpression, and partial gene knockout recapitulated LASP resistance or sensitivity in ALL cell lines. These findings show the importance of assessing changes in gene expression following treatment with an antileukemic agent for its association with drug resistance and highlight that many response genes may not differ in their basal expression in drug-resistant leukemia cells.

Publisher

American Society of Hematology

Subject

Hematology

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