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Oxidative metabolism drives inflammation-induced platinum resistance in human ovarian cancer

Authors :
Matassa DS1
Amoroso MR1
Lu H2
Avolio R1
Arzeni D1
Procaccini C3
Faicchia D4
Maddalena F5
Simeon V5
Agliarulo I1
Zanini E2
Mazzoccoli C5
Recchi C2
Stronach E6
Marone G4
Gabra H6
Matarese G1
Landriscina M5
7
Esposito F1.
Matassa, D S
Amoroso, M R
Lu, H
Avolio, R
Arzeni, D
Procaccini, C
Faicchia, D
Maddalena, F
Simeon, V
Agliarulo, I
Zanini, E
Mazzoccoli, C
Recchi, C
Stronach, E
Marone, G
Gabra, H
Matarese, G
Landriscina, M
Esposito, F
Matassa, DANILO SWANN
Amoroso, MARIA ROSARIA
Avolio, Rosario
Procaccini, Claudio
Faicchia, Deriggio
Agliarulo, Ilenia
Marone, Gianni
Matarese, Giuseppe
Esposito, Franca
Source :
Cell Death and Differentiation, Cell death and differentiation (2016). doi:10.1038/cdd.2016.39, info:cnr-pdr/source/autori:Matassa DS1, Amoroso MR1, Lu H2, Avolio R1, Arzeni D1, Procaccini C3, Faicchia D4, Maddalena F5, Simeon V5, Agliarulo I1, Zanini E2, Mazzoccoli C5, Recchi C2, Stronach E6, Marone G4, Gabra H6, Matarese G1, Landriscina M5,7, Esposito F1./titolo:Oxidative metabolism drives inflammation-induced platinum resistance in human ovarian cancer./doi:10.1038%2Fcdd.2016.39/rivista:Cell death and differentiation/anno:2016/pagina_da:/pagina_a:/intervallo_pagine:/volume
Publication Year :
2015

Abstract

Tumour cells have long been considered defective in mitochondrial respiration and mostly dependent on glycolytic metabolism. However, this assumption is currently challenged by several lines of evidence in a growing number of tumours. Ovarian cancer (OC) is one of the most lethal cancers worldwide, but it continues to be a poorly understood disease and its metabolic features are far to be elucidated. In this context, we investigated the role of tumour necrosis factor receptor-associated protein 1 (TRAP1), which is found upregulated in several cancer types and is a key modulator of tumour cell metabolism. Surprisingly, we found that TRAP1 expression inversely correlated with grade, stage and lower survival in a large cohort of OC patients. Accordingly, TRAP1 silencing induced resistance to cisplatin, resistant cells showed increased oxidative metabolism compared with their sensitive counterpart, and the bioenergetics cellular index of higher grade tumours indicated increased mitochondrial respiration. Strikingly, cisplatin resistance was reversible upon pharmacological inhibition of mitochondrial oxidative phosphorylation by metformin/oligomycin. At molecular level, increased oxidative metabolism in low TRAP1-expressing OC cells and tissues enhanced production of inflammatory mediators such as interleukin (IL)-6 and IL-8. Mechanistically, we identified members of the multidrug resistance complex (MDR) as key mediators of such metabolism-driven, inflammation-induced process. Indeed, treatment of OC cell lines with TNFα and IL6 induced a selective increase in the expression of TAP1 and multidrug resistance protein 1, whereas TAP1 silencing sensitized cells to cisplatin-induced apoptosis. Our results unveil a novel role for TRAP1 and oxidative metabolism in cancer progression and suggest the targeting of mitochondrial bioenergetics to increase cisplatin efficacy in human OC.Cell Death and Differentiation advance online publication, 20 May 2016; doi:10.1038/cdd.2016.39.

Details

ISSN :
14765403
Volume :
23
Issue :
9
Database :
OpenAIRE
Journal :
Cell death and differentiation
Accession number :
edsair.doi.dedup.....bfb369a830910dbf2a2be69e46b10f78