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Inhibition of glucose-6-phosphate dehydrogenase sensitizes cisplatin-resistant cells to death.


Type

Article

Change log

Authors

Catanzaro, Daniela 
Gaude, Edoardo 
Orso, Genny 
Giordano, Carla 
Guzzo, Giulia 

Abstract

The mechanisms of cisplatin resistance, one of the major limitations of current chemotherapy, has only partially been described. We previously demonstrated that cisplatin-resistant ovarian cancer cells (C13), are characterized by reduced mitochondrial activity and higher glucose-dependency when compared to the cisplatin-sensitive counterpart (2008). In this work we further characterized the role of metabolic transformation in cisplatin resistance. By using transmitochondrial hybrids we show that metabolic reprogramming of cisplatin-resistant cell is not caused by inherent mtDNA mutations. We also found that C13 cells not only present an increased glucose-uptake and consumption, but also exhibit increased expression and enzymatic activity of the Pentose Phosphate pathway (PPP) enzyme Glucose-6-Phosphate Dehydrogenase (G6PDH). Moreover, we show that cisplatin-resistant cells are more sensitive to G6PDH inhibition. Even if the metabolomic fingerprint of ovarian cancer cells remains to be further elucidated, these findings indicate that PPP offers innovative potential targets to overcome cisplatin resistance.

Description

Keywords

PPP, cancer metabolism, cisplatin, drug resistance, transmitochondrial hybrids, Antineoplastic Agents, Cell Line, Tumor, Cisplatin, DNA, Mitochondrial, Dose-Response Relationship, Drug, Drug Resistance, Neoplasm, Energy Metabolism, Enzyme Inhibitors, Female, Glucose, Glucosephosphate Dehydrogenase, Glutamine, Humans, Mitochondria, Ovarian Neoplasms, Signal Transduction, Time Factors

Journal Title

Oncotarget

Conference Name

Journal ISSN

1949-2553
1949-2553

Volume Title

6

Publisher

Impact Journals, LLC
Sponsorship
Medical Research Council (MC_UU_12022/6)
This work was financially supported by PRAT (University of Padova), grant no. CPDA124517/12 and MIUR grant no 60A04–0443. DC fellowship was supported by grant no. CPDR134012. AR was supported by the AIRC grant no. IG 15863 and by the University of Padova grant no. CPDA 123598.