A systems oncology approach identifies NT5E as a key metabolic regulator in tumor cells and modulator of platinum sensitivity
File(s)Manuscript_JPR_Nevedomskaya_Revised open access.docx (895.17 KB)
Accepted version
Author(s)
Type
Journal Article
Abstract
Altered metabolism in tumor cells is required for rapid proliferation but also can influence other phenotypes that affect clinical outcomes such as metastasis and sensitivity to chemotherapy. Here, a genome-wide association study (GWAS)-guided integration of NCI-60 transcriptome and metabolome data identified ecto-5′-nucleotidase (NT5E or CD73) as a major determinant of metabolic phenotypes in cancer cells. NT5E expression and associated metabolome variations were also correlated with sensitivity to several chemotherapeutics including platinum-based treatment. NT5E mRNA levels were observed to be elevated in cells upon in vitro and in vivo acquisition of platinum resistance in ovarian cancer cells, and specific targeting of NT5E increased tumor cell sensitivity to platinum. We observed that tumor NT5E levels were prognostic for outcomes in ovarian cancer and were elevated after treatment with platinum, supporting the translational relevance of our findings. In this work, we integrated and analyzed a plethora of public data, demonstating the merit of such a systems oncology approach for the discovery of novel players in cancer biology and therapy. We experimentally validated the main findings of the NT5E gene being involved in both intrinsic and acquired resistance to platinum-based drugs. We propose that the efficacy of conventional chemotherapy could be improved by NT5E inhibition and that NT5E expression may be a useful prognostic and predictive clinical biomarker.
Date Issued
2015-12-02
Date Acceptance
2015-12-02
Citation
Journal of Proteome Research, 2015, 15 (1), pp.280-290
ISSN
1535-3893
Publisher
American Chemical Society
Start Page
280
End Page
290
Journal / Book Title
Journal of Proteome Research
Volume
15
Issue
1
Copyright Statement
This document is the Accepted Manuscript version of a Published Work that appeared in final form in Journal of Proteome Research, copyright © 2015 American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see
Sponsor
Brain Tumour Research Campaign
Grant Number
n/a
Subjects
Science & Technology
Life Sciences & Biomedicine
Biochemical Research Methods
Biochemistry & Molecular Biology
O2PLS
chemometrics
cancer
metabonomics
transcriptomics
data integration
chemotherapy
cisplatin resistance
HUMAN BREAST-CANCER
DNA COPY NUMBER
OVARIAN-CANCER
MESENCHYMAL TRANSITION
POOR-PROGNOSIS
CD73
EXPRESSION
ADENOSINE
RECEPTOR
SURVIVAL
Publication Status
Published