Cargando…
SI113, a SGK1 inhibitor, potentiates the effects of radiotherapy, modulates the response to oxidative stress and induces cytotoxic autophagy in human glioblastoma multiforme cells
Glioblastoma multiforme (GBM) is the most aggressive CNS tumor and is characterized by a very high frequency of clinical relapse after therapy and thus by a dismal prognosis, which strongly compromises patients survival. We have recently identified the small molecule SI113, as a potent and selective...
Autores principales: | , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Impact Journals LLC
2016
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4941283/ https://www.ncbi.nlm.nih.gov/pubmed/26908461 http://dx.doi.org/10.18632/oncotarget.7520 |
_version_ | 1782442276699504640 |
---|---|
author | Talarico, Cristina Dattilo, Vincenzo D'Antona, Lucia Barone, Agnese Amodio, Nicola Belviso, Stefania Musumeci, Francesca Abbruzzese, Claudia Bianco, Cataldo Trapasso, Francesco Schenone, Silvia Alcaro, Stefano Ortuso, Francesco Florio, Tullio Paggi, Marco G. Perrotti, Nicola Amato, Rosario |
author_facet | Talarico, Cristina Dattilo, Vincenzo D'Antona, Lucia Barone, Agnese Amodio, Nicola Belviso, Stefania Musumeci, Francesca Abbruzzese, Claudia Bianco, Cataldo Trapasso, Francesco Schenone, Silvia Alcaro, Stefano Ortuso, Francesco Florio, Tullio Paggi, Marco G. Perrotti, Nicola Amato, Rosario |
author_sort | Talarico, Cristina |
collection | PubMed |
description | Glioblastoma multiforme (GBM) is the most aggressive CNS tumor and is characterized by a very high frequency of clinical relapse after therapy and thus by a dismal prognosis, which strongly compromises patients survival. We have recently identified the small molecule SI113, as a potent and selective inhibitor of SGK1, a serine/threonine protein kinase, that modulates several oncogenic signaling cascades. The SI113-dependent SGK1 inhibition induces cell death, blocks proliferation and perturbs cell cycle progression by modulating SGK1-related substrates. SI113 is also able to strongly and consistently block, in vitro and in vivo, growth and survival of human hepatocellular-carcinomas, either used as a single agent or in combination with ionizing radiations. In the present paper we aim to study the effect of SI113 on human GBM cell lines with variable p53 expression. Cell viability, cell death, caspase activation and cell cycle progression were then analyzed by FACS and WB-based assays, after exposure to SI113, with or without oxidative stress and ionizing radiations. Moreover, autophagy and related reticulum stress response were evaluated. We show here, that i) SGK1 is over-expressed in highly malignant gliomas and that the treatment with SI113 leads to ii) significant increase in caspase-mediated apoptotic cell death in GBM cell lines but not in normal fibroblasts; iii)enhancement of the effects of ionizing radiations; iv) modulation of the response to oxidative reticulum stress; v) induction of cytotoxic autophagy. Evidence reported here underlines the therapeutic potential of SI113 in GBM, suggesting a new therapeutic strategy either alone or in combination with radiotherapy. |
format | Online Article Text |
id | pubmed-4941283 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Impact Journals LLC |
record_format | MEDLINE/PubMed |
spelling | pubmed-49412832016-07-19 SI113, a SGK1 inhibitor, potentiates the effects of radiotherapy, modulates the response to oxidative stress and induces cytotoxic autophagy in human glioblastoma multiforme cells Talarico, Cristina Dattilo, Vincenzo D'Antona, Lucia Barone, Agnese Amodio, Nicola Belviso, Stefania Musumeci, Francesca Abbruzzese, Claudia Bianco, Cataldo Trapasso, Francesco Schenone, Silvia Alcaro, Stefano Ortuso, Francesco Florio, Tullio Paggi, Marco G. Perrotti, Nicola Amato, Rosario Oncotarget Research Paper Glioblastoma multiforme (GBM) is the most aggressive CNS tumor and is characterized by a very high frequency of clinical relapse after therapy and thus by a dismal prognosis, which strongly compromises patients survival. We have recently identified the small molecule SI113, as a potent and selective inhibitor of SGK1, a serine/threonine protein kinase, that modulates several oncogenic signaling cascades. The SI113-dependent SGK1 inhibition induces cell death, blocks proliferation and perturbs cell cycle progression by modulating SGK1-related substrates. SI113 is also able to strongly and consistently block, in vitro and in vivo, growth and survival of human hepatocellular-carcinomas, either used as a single agent or in combination with ionizing radiations. In the present paper we aim to study the effect of SI113 on human GBM cell lines with variable p53 expression. Cell viability, cell death, caspase activation and cell cycle progression were then analyzed by FACS and WB-based assays, after exposure to SI113, with or without oxidative stress and ionizing radiations. Moreover, autophagy and related reticulum stress response were evaluated. We show here, that i) SGK1 is over-expressed in highly malignant gliomas and that the treatment with SI113 leads to ii) significant increase in caspase-mediated apoptotic cell death in GBM cell lines but not in normal fibroblasts; iii)enhancement of the effects of ionizing radiations; iv) modulation of the response to oxidative reticulum stress; v) induction of cytotoxic autophagy. Evidence reported here underlines the therapeutic potential of SI113 in GBM, suggesting a new therapeutic strategy either alone or in combination with radiotherapy. Impact Journals LLC 2016-02-19 /pmc/articles/PMC4941283/ /pubmed/26908461 http://dx.doi.org/10.18632/oncotarget.7520 Text en Copyright: © 2016 Talarico et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Research Paper Talarico, Cristina Dattilo, Vincenzo D'Antona, Lucia Barone, Agnese Amodio, Nicola Belviso, Stefania Musumeci, Francesca Abbruzzese, Claudia Bianco, Cataldo Trapasso, Francesco Schenone, Silvia Alcaro, Stefano Ortuso, Francesco Florio, Tullio Paggi, Marco G. Perrotti, Nicola Amato, Rosario SI113, a SGK1 inhibitor, potentiates the effects of radiotherapy, modulates the response to oxidative stress and induces cytotoxic autophagy in human glioblastoma multiforme cells |
title | SI113, a SGK1 inhibitor, potentiates the effects of radiotherapy, modulates the response to oxidative stress and induces cytotoxic autophagy in human glioblastoma multiforme cells |
title_full | SI113, a SGK1 inhibitor, potentiates the effects of radiotherapy, modulates the response to oxidative stress and induces cytotoxic autophagy in human glioblastoma multiforme cells |
title_fullStr | SI113, a SGK1 inhibitor, potentiates the effects of radiotherapy, modulates the response to oxidative stress and induces cytotoxic autophagy in human glioblastoma multiforme cells |
title_full_unstemmed | SI113, a SGK1 inhibitor, potentiates the effects of radiotherapy, modulates the response to oxidative stress and induces cytotoxic autophagy in human glioblastoma multiforme cells |
title_short | SI113, a SGK1 inhibitor, potentiates the effects of radiotherapy, modulates the response to oxidative stress and induces cytotoxic autophagy in human glioblastoma multiforme cells |
title_sort | si113, a sgk1 inhibitor, potentiates the effects of radiotherapy, modulates the response to oxidative stress and induces cytotoxic autophagy in human glioblastoma multiforme cells |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4941283/ https://www.ncbi.nlm.nih.gov/pubmed/26908461 http://dx.doi.org/10.18632/oncotarget.7520 |
work_keys_str_mv | AT talaricocristina si113asgk1inhibitorpotentiatestheeffectsofradiotherapymodulatestheresponsetooxidativestressandinducescytotoxicautophagyinhumanglioblastomamultiformecells AT dattilovincenzo si113asgk1inhibitorpotentiatestheeffectsofradiotherapymodulatestheresponsetooxidativestressandinducescytotoxicautophagyinhumanglioblastomamultiformecells AT dantonalucia si113asgk1inhibitorpotentiatestheeffectsofradiotherapymodulatestheresponsetooxidativestressandinducescytotoxicautophagyinhumanglioblastomamultiformecells AT baroneagnese si113asgk1inhibitorpotentiatestheeffectsofradiotherapymodulatestheresponsetooxidativestressandinducescytotoxicautophagyinhumanglioblastomamultiformecells AT amodionicola si113asgk1inhibitorpotentiatestheeffectsofradiotherapymodulatestheresponsetooxidativestressandinducescytotoxicautophagyinhumanglioblastomamultiformecells AT belvisostefania si113asgk1inhibitorpotentiatestheeffectsofradiotherapymodulatestheresponsetooxidativestressandinducescytotoxicautophagyinhumanglioblastomamultiformecells AT musumecifrancesca si113asgk1inhibitorpotentiatestheeffectsofradiotherapymodulatestheresponsetooxidativestressandinducescytotoxicautophagyinhumanglioblastomamultiformecells AT abbruzzeseclaudia si113asgk1inhibitorpotentiatestheeffectsofradiotherapymodulatestheresponsetooxidativestressandinducescytotoxicautophagyinhumanglioblastomamultiformecells AT biancocataldo si113asgk1inhibitorpotentiatestheeffectsofradiotherapymodulatestheresponsetooxidativestressandinducescytotoxicautophagyinhumanglioblastomamultiformecells AT trapassofrancesco si113asgk1inhibitorpotentiatestheeffectsofradiotherapymodulatestheresponsetooxidativestressandinducescytotoxicautophagyinhumanglioblastomamultiformecells AT schenonesilvia si113asgk1inhibitorpotentiatestheeffectsofradiotherapymodulatestheresponsetooxidativestressandinducescytotoxicautophagyinhumanglioblastomamultiformecells AT alcarostefano si113asgk1inhibitorpotentiatestheeffectsofradiotherapymodulatestheresponsetooxidativestressandinducescytotoxicautophagyinhumanglioblastomamultiformecells AT ortusofrancesco si113asgk1inhibitorpotentiatestheeffectsofradiotherapymodulatestheresponsetooxidativestressandinducescytotoxicautophagyinhumanglioblastomamultiformecells AT floriotullio si113asgk1inhibitorpotentiatestheeffectsofradiotherapymodulatestheresponsetooxidativestressandinducescytotoxicautophagyinhumanglioblastomamultiformecells AT paggimarcog si113asgk1inhibitorpotentiatestheeffectsofradiotherapymodulatestheresponsetooxidativestressandinducescytotoxicautophagyinhumanglioblastomamultiformecells AT perrottinicola si113asgk1inhibitorpotentiatestheeffectsofradiotherapymodulatestheresponsetooxidativestressandinducescytotoxicautophagyinhumanglioblastomamultiformecells AT amatorosario si113asgk1inhibitorpotentiatestheeffectsofradiotherapymodulatestheresponsetooxidativestressandinducescytotoxicautophagyinhumanglioblastomamultiformecells |