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Involvement of p53 in cell death following cell cycle arrest and mitotic catastrophe induced by rotenone

Title
Involvement of p53 in cell death following cell cycle arrest and mitotic catastrophe induced by rotenone
Type
Article in International Scientific Journal
Year
2011
Authors
Antonio Pedro Goncalves
(Author)
Other
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Valdemar Maximo
(Author)
FMUP
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Jorge Lima
(Author)
FMUP
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Keshav K Singh
(Author)
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Arnaldo Videira
(Author)
ICBAS
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Journal
Vol. 1813
Pages: 492-499
ISSN: 0167-4889
Publisher: Elsevier
Scientific classification
FOS: Natural sciences > Biological sciences
Other information
Authenticus ID: P-002-TX8
Abstract (EN): In order to investigate the cell death-inducing effects of rotenone, a plant extract commonly used as a mitochondrial complex I inhibitor, we studied cancer cell lines with different genetic backgrounds. Rotenone inhibits cell growth through the induction of cell death and cell cycle arrest, associated with the development of mitotic catastrophe. The cell death inducer staurosporine potentiates the inhibition of cell growth by rotenone in a dose-dependent synergistic manner. The tumor suppressor p53 is involved in rotenone-induced cell death, since the drug treatment results in increased expression, phosphorylation and nuclear localization of the protein. The evaluation of the effects of rotenone on a p53-deficient cell line revealed that although not required for the promotion of mitotic catastrophe, functional p53 appears to be essential for the extensive cell death that occurs afterwards. Our results suggest that mitotic slippage also occurs subsequently to the rotenone-induced mitotic arrest and cells treated with the drug for a longer period become senescent. Treatment of mtDNA-depleted cells with rotenone induces cell death and cell cycle arrest as in cells containing wild-type mtDNA, but not formation of reactive oxygen species. This suggests that the effects of rotenone are not dependent from the production of reactive oxygen species. This work highlights the multiple effects of rotenone in cancer cells related to its action as an anti-mitotic drug.
Language: English
Type (Professor's evaluation): Scientific
Contact: apgoncalves@ibmc.up.pt
No. of pages: 8
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