Cargando…

Potential involvement of F(0)F(1)-ATP(synth)ase and reactive oxygen species in apoptosis induction by the antineoplastic agent erucylphosphohomocholine in glioblastoma cell lines: A mechanism for induction of apoptosis via the 18 kDa mitochondrial translocator protein

Erucylphosphohomocholine (ErPC3, Erufosine™) was reported previously to induce apoptosis in otherwise highly apoptosis-resistant malignant glioma cell lines while sparing their non-tumorigenic counterparts. We also previously found that the mitochondrial 18 kDa Translocator Protein (TSPO) is require...

Descripción completa

Detalles Bibliográficos
Autores principales: Veenman, Leo, Alten, Julia, Linnemannstöns, Karen, Shandalov, Yulia, Zeno, Sivan, Lakomek, Max, Gavish, Moshe, Kugler, Wilfried
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer US 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3128697/
https://www.ncbi.nlm.nih.gov/pubmed/20107899
http://dx.doi.org/10.1007/s10495-010-0460-5
_version_ 1782207462554730496
author Veenman, Leo
Alten, Julia
Linnemannstöns, Karen
Shandalov, Yulia
Zeno, Sivan
Lakomek, Max
Gavish, Moshe
Kugler, Wilfried
author_facet Veenman, Leo
Alten, Julia
Linnemannstöns, Karen
Shandalov, Yulia
Zeno, Sivan
Lakomek, Max
Gavish, Moshe
Kugler, Wilfried
author_sort Veenman, Leo
collection PubMed
description Erucylphosphohomocholine (ErPC3, Erufosine™) was reported previously to induce apoptosis in otherwise highly apoptosis-resistant malignant glioma cell lines while sparing their non-tumorigenic counterparts. We also previously found that the mitochondrial 18 kDa Translocator Protein (TSPO) is required for apoptosis induction by ErPC3. These previous studies also suggested involvement of reactive oxygen species (ROS). In the present study we further investigated the potential involvement of ROS generation, the participation of the mitochondrial respiration chain, and the role of the mitochondrial F(O)F(1)-ATP(synth)ase in the pro-apoptotic effects of ErPC3 on U87MG and U118MG human glioblastoma cell lines. For this purpose, cells were treated with the ROS chelator butylated hydroxyanisole (BHA), the mitochondrial respiration chain inhibitors rotenone, antimycin A, myxothiazol, and the uncoupler CCCP. Also oligomycin and piceatannol were studied as inhibitors of the F(O) and F(1) subunits of the mitochondrial F(O)F(1)-ATP(synth)ase, respectively. BHA was able to attenuate apoptosis induction by ErPC3, including mitochondrial ROS generation as determined with cardiolipin oxidation, as well as collapse of the mitochondrial membrane potential (Δψ(m)). Similarly, we found that oligomycin attenuated apoptosis and collapse of the Δψ(m), normally induced by ErPC3, including the accompanying reductions in cellular ATP levels. Other inhibitors of the mitochondrial respiration chain, as well as piceatannol, did not show such effects. Consequently, our findings strongly point to a role for the F(O) subunit of the mitochondrial F(O)F(1)-ATP(synth)ase in ErPC3-induced apoptosis and dissipation of Δψ(m) as well as ROS generation by ErPC3 and TSPO.
format Online
Article
Text
id pubmed-3128697
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Springer US
record_format MEDLINE/PubMed
spelling pubmed-31286972011-08-10 Potential involvement of F(0)F(1)-ATP(synth)ase and reactive oxygen species in apoptosis induction by the antineoplastic agent erucylphosphohomocholine in glioblastoma cell lines: A mechanism for induction of apoptosis via the 18 kDa mitochondrial translocator protein Veenman, Leo Alten, Julia Linnemannstöns, Karen Shandalov, Yulia Zeno, Sivan Lakomek, Max Gavish, Moshe Kugler, Wilfried Apoptosis Original Paper Erucylphosphohomocholine (ErPC3, Erufosine™) was reported previously to induce apoptosis in otherwise highly apoptosis-resistant malignant glioma cell lines while sparing their non-tumorigenic counterparts. We also previously found that the mitochondrial 18 kDa Translocator Protein (TSPO) is required for apoptosis induction by ErPC3. These previous studies also suggested involvement of reactive oxygen species (ROS). In the present study we further investigated the potential involvement of ROS generation, the participation of the mitochondrial respiration chain, and the role of the mitochondrial F(O)F(1)-ATP(synth)ase in the pro-apoptotic effects of ErPC3 on U87MG and U118MG human glioblastoma cell lines. For this purpose, cells were treated with the ROS chelator butylated hydroxyanisole (BHA), the mitochondrial respiration chain inhibitors rotenone, antimycin A, myxothiazol, and the uncoupler CCCP. Also oligomycin and piceatannol were studied as inhibitors of the F(O) and F(1) subunits of the mitochondrial F(O)F(1)-ATP(synth)ase, respectively. BHA was able to attenuate apoptosis induction by ErPC3, including mitochondrial ROS generation as determined with cardiolipin oxidation, as well as collapse of the mitochondrial membrane potential (Δψ(m)). Similarly, we found that oligomycin attenuated apoptosis and collapse of the Δψ(m), normally induced by ErPC3, including the accompanying reductions in cellular ATP levels. Other inhibitors of the mitochondrial respiration chain, as well as piceatannol, did not show such effects. Consequently, our findings strongly point to a role for the F(O) subunit of the mitochondrial F(O)F(1)-ATP(synth)ase in ErPC3-induced apoptosis and dissipation of Δψ(m) as well as ROS generation by ErPC3 and TSPO. Springer US 2010-01-28 2010-07 /pmc/articles/PMC3128697/ /pubmed/20107899 http://dx.doi.org/10.1007/s10495-010-0460-5 Text en © Springer Science+Business Media, LLC 2010
spellingShingle Original Paper
Veenman, Leo
Alten, Julia
Linnemannstöns, Karen
Shandalov, Yulia
Zeno, Sivan
Lakomek, Max
Gavish, Moshe
Kugler, Wilfried
Potential involvement of F(0)F(1)-ATP(synth)ase and reactive oxygen species in apoptosis induction by the antineoplastic agent erucylphosphohomocholine in glioblastoma cell lines: A mechanism for induction of apoptosis via the 18 kDa mitochondrial translocator protein
title Potential involvement of F(0)F(1)-ATP(synth)ase and reactive oxygen species in apoptosis induction by the antineoplastic agent erucylphosphohomocholine in glioblastoma cell lines: A mechanism for induction of apoptosis via the 18 kDa mitochondrial translocator protein
title_full Potential involvement of F(0)F(1)-ATP(synth)ase and reactive oxygen species in apoptosis induction by the antineoplastic agent erucylphosphohomocholine in glioblastoma cell lines: A mechanism for induction of apoptosis via the 18 kDa mitochondrial translocator protein
title_fullStr Potential involvement of F(0)F(1)-ATP(synth)ase and reactive oxygen species in apoptosis induction by the antineoplastic agent erucylphosphohomocholine in glioblastoma cell lines: A mechanism for induction of apoptosis via the 18 kDa mitochondrial translocator protein
title_full_unstemmed Potential involvement of F(0)F(1)-ATP(synth)ase and reactive oxygen species in apoptosis induction by the antineoplastic agent erucylphosphohomocholine in glioblastoma cell lines: A mechanism for induction of apoptosis via the 18 kDa mitochondrial translocator protein
title_short Potential involvement of F(0)F(1)-ATP(synth)ase and reactive oxygen species in apoptosis induction by the antineoplastic agent erucylphosphohomocholine in glioblastoma cell lines: A mechanism for induction of apoptosis via the 18 kDa mitochondrial translocator protein
title_sort potential involvement of f(0)f(1)-atp(synth)ase and reactive oxygen species in apoptosis induction by the antineoplastic agent erucylphosphohomocholine in glioblastoma cell lines: a mechanism for induction of apoptosis via the 18 kda mitochondrial translocator protein
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3128697/
https://www.ncbi.nlm.nih.gov/pubmed/20107899
http://dx.doi.org/10.1007/s10495-010-0460-5
work_keys_str_mv AT veenmanleo potentialinvolvementoff0f1atpsynthaseandreactiveoxygenspeciesinapoptosisinductionbytheantineoplasticagenterucylphosphohomocholineinglioblastomacelllinesamechanismforinductionofapoptosisviathe18kdamitochondrialtranslocatorprotein
AT altenjulia potentialinvolvementoff0f1atpsynthaseandreactiveoxygenspeciesinapoptosisinductionbytheantineoplasticagenterucylphosphohomocholineinglioblastomacelllinesamechanismforinductionofapoptosisviathe18kdamitochondrialtranslocatorprotein
AT linnemannstonskaren potentialinvolvementoff0f1atpsynthaseandreactiveoxygenspeciesinapoptosisinductionbytheantineoplasticagenterucylphosphohomocholineinglioblastomacelllinesamechanismforinductionofapoptosisviathe18kdamitochondrialtranslocatorprotein
AT shandalovyulia potentialinvolvementoff0f1atpsynthaseandreactiveoxygenspeciesinapoptosisinductionbytheantineoplasticagenterucylphosphohomocholineinglioblastomacelllinesamechanismforinductionofapoptosisviathe18kdamitochondrialtranslocatorprotein
AT zenosivan potentialinvolvementoff0f1atpsynthaseandreactiveoxygenspeciesinapoptosisinductionbytheantineoplasticagenterucylphosphohomocholineinglioblastomacelllinesamechanismforinductionofapoptosisviathe18kdamitochondrialtranslocatorprotein
AT lakomekmax potentialinvolvementoff0f1atpsynthaseandreactiveoxygenspeciesinapoptosisinductionbytheantineoplasticagenterucylphosphohomocholineinglioblastomacelllinesamechanismforinductionofapoptosisviathe18kdamitochondrialtranslocatorprotein
AT gavishmoshe potentialinvolvementoff0f1atpsynthaseandreactiveoxygenspeciesinapoptosisinductionbytheantineoplasticagenterucylphosphohomocholineinglioblastomacelllinesamechanismforinductionofapoptosisviathe18kdamitochondrialtranslocatorprotein
AT kuglerwilfried potentialinvolvementoff0f1atpsynthaseandreactiveoxygenspeciesinapoptosisinductionbytheantineoplasticagenterucylphosphohomocholineinglioblastomacelllinesamechanismforinductionofapoptosisviathe18kdamitochondrialtranslocatorprotein