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Chemotherapy drug response in ovarian cancer cells strictly depends on a cathepsin D-Bax activation loop

The ovarian cancer cell lines A2780 (wild-type p53) and NIHOVCAR3 (mutated p53) showed, respectively, sensitivity and resistance towards several chemotherapy drugs. We hypothesized that the two cell lines differ in their ability to activate the intrinsic death pathway and have, therefore, dissected...

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Autores principales: Castino, Roberta, Peracchio, Claudia, Salini, Alessandra, Nicotra, Giuseppina, Trincheri, Nicol F, Démoz, Marina, Valente, Guido, Isidoro, Ciro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Ltd 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4496106/
https://www.ncbi.nlm.nih.gov/pubmed/18657225
http://dx.doi.org/10.1111/j.1582-4934.2008.00435.x
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author Castino, Roberta
Peracchio, Claudia
Salini, Alessandra
Nicotra, Giuseppina
Trincheri, Nicol F
Démoz, Marina
Valente, Guido
Isidoro, Ciro
author_facet Castino, Roberta
Peracchio, Claudia
Salini, Alessandra
Nicotra, Giuseppina
Trincheri, Nicol F
Démoz, Marina
Valente, Guido
Isidoro, Ciro
author_sort Castino, Roberta
collection PubMed
description The ovarian cancer cell lines A2780 (wild-type p53) and NIHOVCAR3 (mutated p53) showed, respectively, sensitivity and resistance towards several chemotherapy drugs. We hypothesized that the two cell lines differ in their ability to activate the intrinsic death pathway and have, therefore, dissected the lysosome-mitochondrion signalling pathway by pharmacological inhibition or genetic manipulation of key regulators and executioners. Biochemical and morphological confocal fluorescence studies showed that: (1) In A2780 cells bcl-2 is expressed at an undetectable level, whereas Bax is expressed at a rather high level; by contrast, bcl-2 is highly expressed and Bax is expressed at extremely low levels in NIHOVCAR3 cells; (2) Chemotherapy treatment reduced the expression of bcl-2 in NIHOVCAR3 cells, yet these cells resisted to drug toxicity; (3) Cathepsin D (CD), not cathepsin B or L, mediates the activation of the mitochondrial intrinsic death pathway in A2780 cells; (4) Lysosome leakage and cytosolic relocation of CD occurs in the chemosensitive A2780 cells, not in the chemoresistant NIHOVCAR3 cells; (5) Bax is essential for the permeabilization of both lysosomes and mitochondria in A2780 cells exposed to chemotherapy drugs; (6) CD activity is mandatory for the oligomerization of Bax on both mitochondrial and lysosomal membranes; (7) Bax activation did not occur in the resistant NIHOVCAR3 cells despite their high content in CD. The present data are consistent with a model in which on treatment with a cytotoxic drug the activation of a CD-Bax loop leads to the generalized permeabilization of lysosomes and eventually of mitochondria, thus reaching the point of no return, and culminates with the activation of the caspase cascade. Our data also imply that dysfunctional permeabilization of lysosomes contributes to the development of chemoresistance.
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spelling pubmed-44961062015-07-13 Chemotherapy drug response in ovarian cancer cells strictly depends on a cathepsin D-Bax activation loop Castino, Roberta Peracchio, Claudia Salini, Alessandra Nicotra, Giuseppina Trincheri, Nicol F Démoz, Marina Valente, Guido Isidoro, Ciro J Cell Mol Med Articles The ovarian cancer cell lines A2780 (wild-type p53) and NIHOVCAR3 (mutated p53) showed, respectively, sensitivity and resistance towards several chemotherapy drugs. We hypothesized that the two cell lines differ in their ability to activate the intrinsic death pathway and have, therefore, dissected the lysosome-mitochondrion signalling pathway by pharmacological inhibition or genetic manipulation of key regulators and executioners. Biochemical and morphological confocal fluorescence studies showed that: (1) In A2780 cells bcl-2 is expressed at an undetectable level, whereas Bax is expressed at a rather high level; by contrast, bcl-2 is highly expressed and Bax is expressed at extremely low levels in NIHOVCAR3 cells; (2) Chemotherapy treatment reduced the expression of bcl-2 in NIHOVCAR3 cells, yet these cells resisted to drug toxicity; (3) Cathepsin D (CD), not cathepsin B or L, mediates the activation of the mitochondrial intrinsic death pathway in A2780 cells; (4) Lysosome leakage and cytosolic relocation of CD occurs in the chemosensitive A2780 cells, not in the chemoresistant NIHOVCAR3 cells; (5) Bax is essential for the permeabilization of both lysosomes and mitochondria in A2780 cells exposed to chemotherapy drugs; (6) CD activity is mandatory for the oligomerization of Bax on both mitochondrial and lysosomal membranes; (7) Bax activation did not occur in the resistant NIHOVCAR3 cells despite their high content in CD. The present data are consistent with a model in which on treatment with a cytotoxic drug the activation of a CD-Bax loop leads to the generalized permeabilization of lysosomes and eventually of mitochondria, thus reaching the point of no return, and culminates with the activation of the caspase cascade. Our data also imply that dysfunctional permeabilization of lysosomes contributes to the development of chemoresistance. John Wiley & Sons, Ltd 2009-06 2008-07-24 /pmc/articles/PMC4496106/ /pubmed/18657225 http://dx.doi.org/10.1111/j.1582-4934.2008.00435.x Text en © 2009 The Authors Journal compilation © 2009 Foundation for Cellular and Molecular Medicine/Blackwell Publishing Ltd
spellingShingle Articles
Castino, Roberta
Peracchio, Claudia
Salini, Alessandra
Nicotra, Giuseppina
Trincheri, Nicol F
Démoz, Marina
Valente, Guido
Isidoro, Ciro
Chemotherapy drug response in ovarian cancer cells strictly depends on a cathepsin D-Bax activation loop
title Chemotherapy drug response in ovarian cancer cells strictly depends on a cathepsin D-Bax activation loop
title_full Chemotherapy drug response in ovarian cancer cells strictly depends on a cathepsin D-Bax activation loop
title_fullStr Chemotherapy drug response in ovarian cancer cells strictly depends on a cathepsin D-Bax activation loop
title_full_unstemmed Chemotherapy drug response in ovarian cancer cells strictly depends on a cathepsin D-Bax activation loop
title_short Chemotherapy drug response in ovarian cancer cells strictly depends on a cathepsin D-Bax activation loop
title_sort chemotherapy drug response in ovarian cancer cells strictly depends on a cathepsin d-bax activation loop
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4496106/
https://www.ncbi.nlm.nih.gov/pubmed/18657225
http://dx.doi.org/10.1111/j.1582-4934.2008.00435.x
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