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Oncosis and apoptosis induction by activation of an overexpressed ion channel in breast cancer cells

Authors :
Peters, Amelia
Jamaludin, S.
Yapa, Kunsala
Chalmers, Silke
Wiegmans, Adrian
Lim, H.
Milevskiy, Michael
Azimi, Iman
Davis, Felicity
Northwood, Korinne
Pera, Elena
Marcial, Daneth
Dray, Eloise
Waterhouse, Nigel
Cabot, Peter
Gonda, Thomas
Kenny, Paraic
Brown, Melissa
Khanna, Kum
Roberts-Thomson, Sarah
Monteith, Gregory
Peters, Amelia
Jamaludin, S.
Yapa, Kunsala
Chalmers, Silke
Wiegmans, Adrian
Lim, H.
Milevskiy, Michael
Azimi, Iman
Davis, Felicity
Northwood, Korinne
Pera, Elena
Marcial, Daneth
Dray, Eloise
Waterhouse, Nigel
Cabot, Peter
Gonda, Thomas
Kenny, Paraic
Brown, Melissa
Khanna, Kum
Roberts-Thomson, Sarah
Monteith, Gregory
Source :
Oncogene
Publication Year :
2017

Abstract

The critical role of calcium signalling in processes related to cancer cell proliferation and invasion has seen a focus on pharmacological inhibition of overexpressed ion channels in specific cancer subtypes as a potential therapeutic approach. However, despite the critical role of calcium in cell death pathways, pharmacological activation of overexpressed ion channels has not been extensively evaluated in breast cancer. Here we define the overexpression of transient receptor potential vanilloid 4 (TRPV4) in a subgroup of breast cancers of the basal molecular subtype. We also report that pharmacological activation of TRPV4 with GSK1016790A reduced viability of two basal breast cancer cell lines with pronounced endogenous overexpression of TRPV4, MDA-MB-468 and HCC1569. Pharmacological activation of TRPV4 produced pronounced cell death through two mechanisms: apoptosis and oncosis in MDA-MB-468 cells. Apoptosis was associated with PARP-1 cleavage and oncosis was associated with a rapid decline in intracellular ATP levels, which was a consequence of, rather than the cause of, the intracellular ion increase. TRPV4 activation also resulted in reduced tumour growth in vivo. These studies define a novel therapeutic strategy for breast cancers that overexpress specific calcium permeable plasmalemmal ion channels with available selective pharmacological activators.

Details

Database :
OAIster
Journal :
Oncogene
Publication Type :
Electronic Resource
Accession number :
edsoai.on1039194960
Document Type :
Electronic Resource