Cargando…

Mitochondrial Malfunctioning, Proteasome Arrest and Apoptosis in Cancer Cells by Focused Intracellular Generation of Oxygen Radicals

Photofrin/photodynamic therapy (PDT) at sub-lethal doses induced a transient stall in proteasome activity in surviving A549 (p53(+/+)) and H1299 (p53(−/−)) cells as indicated by the time-dependent decline/recovery of chymotrypsin-like activity. Indeed, within 3 h of incubation, Photofrin invaded the...

Descripción completa

Detalles Bibliográficos
Autores principales: Postiglione, Ilaria, Chiaviello, Angela, Barra, Federica, Roscetto, Emanuela, Soriano, Amata A., Catania, Maria Rosaria, Palumbo, Giuseppe, Pierantoni, Giovanna Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4613209/
https://www.ncbi.nlm.nih.gov/pubmed/26343643
http://dx.doi.org/10.3390/ijms160920375
_version_ 1782396233944399872
author Postiglione, Ilaria
Chiaviello, Angela
Barra, Federica
Roscetto, Emanuela
Soriano, Amata A.
Catania, Maria Rosaria
Palumbo, Giuseppe
Pierantoni, Giovanna Maria
author_facet Postiglione, Ilaria
Chiaviello, Angela
Barra, Federica
Roscetto, Emanuela
Soriano, Amata A.
Catania, Maria Rosaria
Palumbo, Giuseppe
Pierantoni, Giovanna Maria
author_sort Postiglione, Ilaria
collection PubMed
description Photofrin/photodynamic therapy (PDT) at sub-lethal doses induced a transient stall in proteasome activity in surviving A549 (p53(+/+)) and H1299 (p53(−/−)) cells as indicated by the time-dependent decline/recovery of chymotrypsin-like activity. Indeed, within 3 h of incubation, Photofrin invaded the cytoplasm and localized preferentially within the mitochondria. Its light activation determined a decrease in mitochondrial membrane potential and a reversible arrest in proteasomal activity. A similar result is obtained by treating cells with Antimycin and Rotenone, indicating, as a common denominator of this effect, the ATP decrease. Both inhibitors, however, were more toxic to cells as the recovery of proteasomal activity was incomplete. We evaluated whether combining PDT (which is a treatment for killing tumor cells, per se, and inducing proteasome arrest in the surviving ones) with Bortezomib doses capable of sustaining the stall would protract the arrest with sufficient time to induce apoptosis in remaining cells. The evaluation of the mitochondrial membrane depolarization, residual proteasome and mitochondrial enzymatic activities, colony-forming capabilities, and changes in protein expression profiles in A549 and H1299 cells under a combined therapeutic regimen gave results consistent with our hypothesis.
format Online
Article
Text
id pubmed-4613209
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-46132092015-10-26 Mitochondrial Malfunctioning, Proteasome Arrest and Apoptosis in Cancer Cells by Focused Intracellular Generation of Oxygen Radicals Postiglione, Ilaria Chiaviello, Angela Barra, Federica Roscetto, Emanuela Soriano, Amata A. Catania, Maria Rosaria Palumbo, Giuseppe Pierantoni, Giovanna Maria Int J Mol Sci Article Photofrin/photodynamic therapy (PDT) at sub-lethal doses induced a transient stall in proteasome activity in surviving A549 (p53(+/+)) and H1299 (p53(−/−)) cells as indicated by the time-dependent decline/recovery of chymotrypsin-like activity. Indeed, within 3 h of incubation, Photofrin invaded the cytoplasm and localized preferentially within the mitochondria. Its light activation determined a decrease in mitochondrial membrane potential and a reversible arrest in proteasomal activity. A similar result is obtained by treating cells with Antimycin and Rotenone, indicating, as a common denominator of this effect, the ATP decrease. Both inhibitors, however, were more toxic to cells as the recovery of proteasomal activity was incomplete. We evaluated whether combining PDT (which is a treatment for killing tumor cells, per se, and inducing proteasome arrest in the surviving ones) with Bortezomib doses capable of sustaining the stall would protract the arrest with sufficient time to induce apoptosis in remaining cells. The evaluation of the mitochondrial membrane depolarization, residual proteasome and mitochondrial enzymatic activities, colony-forming capabilities, and changes in protein expression profiles in A549 and H1299 cells under a combined therapeutic regimen gave results consistent with our hypothesis. MDPI 2015-08-28 /pmc/articles/PMC4613209/ /pubmed/26343643 http://dx.doi.org/10.3390/ijms160920375 Text en © 2015 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Postiglione, Ilaria
Chiaviello, Angela
Barra, Federica
Roscetto, Emanuela
Soriano, Amata A.
Catania, Maria Rosaria
Palumbo, Giuseppe
Pierantoni, Giovanna Maria
Mitochondrial Malfunctioning, Proteasome Arrest and Apoptosis in Cancer Cells by Focused Intracellular Generation of Oxygen Radicals
title Mitochondrial Malfunctioning, Proteasome Arrest and Apoptosis in Cancer Cells by Focused Intracellular Generation of Oxygen Radicals
title_full Mitochondrial Malfunctioning, Proteasome Arrest and Apoptosis in Cancer Cells by Focused Intracellular Generation of Oxygen Radicals
title_fullStr Mitochondrial Malfunctioning, Proteasome Arrest and Apoptosis in Cancer Cells by Focused Intracellular Generation of Oxygen Radicals
title_full_unstemmed Mitochondrial Malfunctioning, Proteasome Arrest and Apoptosis in Cancer Cells by Focused Intracellular Generation of Oxygen Radicals
title_short Mitochondrial Malfunctioning, Proteasome Arrest and Apoptosis in Cancer Cells by Focused Intracellular Generation of Oxygen Radicals
title_sort mitochondrial malfunctioning, proteasome arrest and apoptosis in cancer cells by focused intracellular generation of oxygen radicals
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4613209/
https://www.ncbi.nlm.nih.gov/pubmed/26343643
http://dx.doi.org/10.3390/ijms160920375
work_keys_str_mv AT postiglioneilaria mitochondrialmalfunctioningproteasomearrestandapoptosisincancercellsbyfocusedintracellulargenerationofoxygenradicals
AT chiavielloangela mitochondrialmalfunctioningproteasomearrestandapoptosisincancercellsbyfocusedintracellulargenerationofoxygenradicals
AT barrafederica mitochondrialmalfunctioningproteasomearrestandapoptosisincancercellsbyfocusedintracellulargenerationofoxygenradicals
AT roscettoemanuela mitochondrialmalfunctioningproteasomearrestandapoptosisincancercellsbyfocusedintracellulargenerationofoxygenradicals
AT sorianoamataa mitochondrialmalfunctioningproteasomearrestandapoptosisincancercellsbyfocusedintracellulargenerationofoxygenradicals
AT cataniamariarosaria mitochondrialmalfunctioningproteasomearrestandapoptosisincancercellsbyfocusedintracellulargenerationofoxygenradicals
AT palumbogiuseppe mitochondrialmalfunctioningproteasomearrestandapoptosisincancercellsbyfocusedintracellulargenerationofoxygenradicals
AT pierantonigiovannamaria mitochondrialmalfunctioningproteasomearrestandapoptosisincancercellsbyfocusedintracellulargenerationofoxygenradicals