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Co-targeting of convergent nucleotide biosynthetic pathways for leukemia eradication.

Authors :
Nathanson, David A
Nathanson, David A
Armijo, Amanda L
Tom, Michelle
Li, Zheng
Dimitrova, Elizabeth
Austin, Wayne R
Nomme, Julian
Campbell, Dean O
Ta, Lisa
Le, Thuc M
Lee, Jason T
Darvish, Ryan
Gordin, Ari
Wei, Liu
Liao, Hsiang-I
Wilks, Moses
Martin, Colette
Sadeghi, Saman
Murphy, Jennifer M
Boulos, Nidal
Phelps, Michael E
Faull, Kym F
Herschman, Harvey R
Jung, Michael E
Czernin, Johannes
Lavie, Arnon
Radu, Caius G
Nathanson, David A
Nathanson, David A
Armijo, Amanda L
Tom, Michelle
Li, Zheng
Dimitrova, Elizabeth
Austin, Wayne R
Nomme, Julian
Campbell, Dean O
Ta, Lisa
Le, Thuc M
Lee, Jason T
Darvish, Ryan
Gordin, Ari
Wei, Liu
Liao, Hsiang-I
Wilks, Moses
Martin, Colette
Sadeghi, Saman
Murphy, Jennifer M
Boulos, Nidal
Phelps, Michael E
Faull, Kym F
Herschman, Harvey R
Jung, Michael E
Czernin, Johannes
Lavie, Arnon
Radu, Caius G
Source :
The Journal of experimental medicine; vol 211, iss 3, 473-486; 0022-1007
Publication Year :
2014

Abstract

Pharmacological targeting of metabolic processes in cancer must overcome redundancy in biosynthetic pathways. Deoxycytidine (dC) triphosphate (dCTP) can be produced both by the de novo pathway (DNP) and by the nucleoside salvage pathway (NSP). However, the role of the NSP in dCTP production and DNA synthesis in cancer cells is currently not well understood. We show that acute lymphoblastic leukemia (ALL) cells avoid lethal replication stress after thymidine (dT)-induced inhibition of DNP dCTP synthesis by switching to NSP-mediated dCTP production. The metabolic switch in dCTP production triggered by DNP inhibition is accompanied by NSP up-regulation and can be prevented using DI-39, a new high-affinity small-molecule inhibitor of the NSP rate-limiting enzyme dC kinase (dCK). Positron emission tomography (PET) imaging was useful for following both the duration and degree of dCK inhibition by DI-39 treatment in vivo, thus providing a companion pharmacodynamic biomarker. Pharmacological co-targeting of the DNP with dT and the NSP with DI-39 was efficacious against ALL models in mice, without detectable host toxicity. These findings advance our understanding of nucleotide metabolism in leukemic cells, and identify dCTP biosynthesis as a potential new therapeutic target for metabolic interventions in ALL and possibly other hematological malignancies.

Details

Database :
OAIster
Journal :
The Journal of experimental medicine; vol 211, iss 3, 473-486; 0022-1007
Notes :
application/pdf, The Journal of experimental medicine vol 211, iss 3, 473-486 0022-1007
Publication Type :
Electronic Resource
Accession number :
edsoai.on1287332061
Document Type :
Electronic Resource