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  5. Overexpression of the microRNA miR-433 promotes resistance to paclitaxel through the induction of cellular senescence in ovarian cancer cells
 
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Overexpression of the microRNA miR-433 promotes resistance to paclitaxel through the induction of cellular senescence in ovarian cancer cells

Author(s)
Weiner-Gorzel, Karolina  
Dempsey, Eugene  
Milewska, Malgorzata  
McGoldrick, Aloysius  
Toh, Valerie  
Walsh, Aoibheann  
Lindsay, Sinead  
Gubbins, Luke  
Murphy, Madeline  
McCann, Amanda  
et al.  
Uri
http://hdl.handle.net/10197/7252
Date Issued
2015-05
Date Available
2015-12-02T11:25:45Z
Abstract
Annually, ovarian cancer (OC) affects 240,000 women worldwide and is the most lethal gynecological malignancy. High-grade serous OC (HGSOC) is the most common and aggressive OC subtype, characterized by widespread genome changes and chromosomal instability and is consequently poorly responsive to chemotherapy treatment. The objective of this study was to investigate the role of the microRNA miR-433 in the cellular response of OC cells to paclitaxel treatment. We show that stable miR-433 expression in A2780 OC cells results in the induction of cellular senescence demonstrated by morphological changes, downregulation of phosphorylated retinoblastoma (p-Rb), and an increase in β-galactosidase activity. Furthermore, in silico analysis identified four possible miR-433 target genes associated with cellular senescence: cyclin-dependent kinase 6 (CDK6), MAPK14, E2F3, and CDKN2A. Mechanistically, we demonstrate that downregulation of p-Rb is attributable to a miR-433-dependent downregulation of CDK6, establishing it as a novel miR-433 associated gene. Interestingly, we show that high miR-433 expressing cells release miR-433 into the growth media via exosomes which in turn can induce a senescence bystander effect. Furthermore, in relation to a chemotherapeutic response, quantitative real-time polymerase chain reaction (qRT-PCR) analysis revealed that only PEO1 and PEO4 OC cells with the highest miR-433 expression survive paclitaxel treatment. Our data highlight how the aberrant expression of miR-433 can adversely affect intracellular signaling to mediate chemoresistance in OC cells by driving cellular senescence.
Sponsorship
Health Research Board
Other Sponsorship
Mater Surgical Oncology Appeal
Type of Material
Journal Article
Publisher
Wiley
Journal
Cancer medicine
Volume
4
Issue
5
Start Page
745
End Page
758
Copyright (Published Version)
2015 the Authors
Subjects

CDK6

Chemoresistance

miR-433

Ovarian cancer

Senescence

DOI
10.1002/cam4.409
Language
English
Status of Item
Peer reviewed
This item is made available under a Creative Commons License
https://creativecommons.org/licenses/by-nc-nd/3.0/ie/
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Weiner-Gorzel_et_al-2015-Cancer_Medicine.pdf

Size

1.75 MB

Format

Adobe PDF

Checksum (MD5)

cac7eaf23f0a0bd229548a2e9cb71a71

Owning collection
Biology & Environmental Science Research Collection
Mapped collections
Biomolecular and Biomedical Science Research Collection•
Conway Institute Research Collection•
Medicine Research Collection•
SBI Research Collection

Item descriptive metadata is released under a CC-0 (public domain) license: https://creativecommons.org/public-domain/cc0/.
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