Cyclic Pifithrin-α Sensitizes Wild Type p53 Tumor Cells to Antimicrotubule Agent–Induced Apoptosis

As a consequence of multiple functions of p53, its activation in response to cytotoxic stress may have proapoptotic or protective effects depending on the nature of lesions. We have previously shown that mutational inactivation of p53 results in sensitization to paclitaxel. In this study, we used c...

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Main Authors: Valentina Zuco, Franco Zunino
Format: Article
Language:English
Published: Elsevier 2008-06-01
Series:Neoplasia: An International Journal for Oncology Research
Online Access:http://www.sciencedirect.com/science/article/pii/S1476558608801479
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spelling doaj-d77e3bdd005e4dadb615a6927f29c97c2020-11-24T23:48:01ZengElsevierNeoplasia: An International Journal for Oncology Research1476-55861522-80022008-06-0110658759610.1593/neo.08262Cyclic Pifithrin-α Sensitizes Wild Type p53 Tumor Cells to Antimicrotubule Agent–Induced ApoptosisValentina ZucoFranco Zunino As a consequence of multiple functions of p53, its activation in response to cytotoxic stress may have proapoptotic or protective effects depending on the nature of lesions. We have previously shown that mutational inactivation of p53 results in sensitization to paclitaxel. In this study, we used cyclic pifithrin-α, a transcriptional inhibitor of p53, to further investigate the relevance of p53 function in the response of tumor cells to microtubule inhibitors. Using drug concentrations causing only antiproliferative effects, the combination of antimicrotubule agents with subtoxic pifithrin-α doses resulted in increase of sensitivity of two wild type p53 cell lines, associated with a substantial M phase cell accumulation and marked sensitization to apoptosis. Pifithrin-α had no sensitizing effect in p53 defective cells or a marginal effect in normal human fibroblasts. The apoptotic response to the combination was concomitant with p21 down-regulation, Polo-like kinase 1 up-regulation, p34cdc2 kinase dephosphory-lation, and cdc25C phosphatase phosphorylation, supporting mitotic arrest. Sensitization to paclitaxel-induced apoptosis was also achieved by p53-siRNA transfection in wild type p53 H460 cells. Pifithrin-α did not enhance the apoptotic response after p53 down-regulation. The results support a protective role of the transcriptional activity of p53 in response to mitotic spindle damage. The inhibition of transcriptional activity of p53 may have therapeutic implications in the treatment of p53 wild type tumors with antimitotic agents. http://www.sciencedirect.com/science/article/pii/S1476558608801479
collection DOAJ
language English
format Article
sources DOAJ
author Valentina Zuco
Franco Zunino
spellingShingle Valentina Zuco
Franco Zunino
Cyclic Pifithrin-α Sensitizes Wild Type p53 Tumor Cells to Antimicrotubule Agent–Induced Apoptosis
Neoplasia: An International Journal for Oncology Research
author_facet Valentina Zuco
Franco Zunino
author_sort Valentina Zuco
title Cyclic Pifithrin-α Sensitizes Wild Type p53 Tumor Cells to Antimicrotubule Agent–Induced Apoptosis
title_short Cyclic Pifithrin-α Sensitizes Wild Type p53 Tumor Cells to Antimicrotubule Agent–Induced Apoptosis
title_full Cyclic Pifithrin-α Sensitizes Wild Type p53 Tumor Cells to Antimicrotubule Agent–Induced Apoptosis
title_fullStr Cyclic Pifithrin-α Sensitizes Wild Type p53 Tumor Cells to Antimicrotubule Agent–Induced Apoptosis
title_full_unstemmed Cyclic Pifithrin-α Sensitizes Wild Type p53 Tumor Cells to Antimicrotubule Agent–Induced Apoptosis
title_sort cyclic pifithrin-α sensitizes wild type p53 tumor cells to antimicrotubule agent–induced apoptosis
publisher Elsevier
series Neoplasia: An International Journal for Oncology Research
issn 1476-5586
1522-8002
publishDate 2008-06-01
description As a consequence of multiple functions of p53, its activation in response to cytotoxic stress may have proapoptotic or protective effects depending on the nature of lesions. We have previously shown that mutational inactivation of p53 results in sensitization to paclitaxel. In this study, we used cyclic pifithrin-α, a transcriptional inhibitor of p53, to further investigate the relevance of p53 function in the response of tumor cells to microtubule inhibitors. Using drug concentrations causing only antiproliferative effects, the combination of antimicrotubule agents with subtoxic pifithrin-α doses resulted in increase of sensitivity of two wild type p53 cell lines, associated with a substantial M phase cell accumulation and marked sensitization to apoptosis. Pifithrin-α had no sensitizing effect in p53 defective cells or a marginal effect in normal human fibroblasts. The apoptotic response to the combination was concomitant with p21 down-regulation, Polo-like kinase 1 up-regulation, p34cdc2 kinase dephosphory-lation, and cdc25C phosphatase phosphorylation, supporting mitotic arrest. Sensitization to paclitaxel-induced apoptosis was also achieved by p53-siRNA transfection in wild type p53 H460 cells. Pifithrin-α did not enhance the apoptotic response after p53 down-regulation. The results support a protective role of the transcriptional activity of p53 in response to mitotic spindle damage. The inhibition of transcriptional activity of p53 may have therapeutic implications in the treatment of p53 wild type tumors with antimitotic agents.
url http://www.sciencedirect.com/science/article/pii/S1476558608801479
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