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Inhibition of SREBP1 sensitizes cells to death ligands

Evasion of death receptor ligand-induced apoptosis contributs to cancer development and progression. To better understand mechanisms conferring resistance to death ligands, we screened an siRNA library to identify sequences that sensitize resistant cells to fas activating antibody (CH-11). From this...

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Autores principales: Eberhard, Yanina, Gronda, Marcela, Hurren, Rose, Datti, Alessandro, MacLean, Neil, Ketela, Troy, Moffat, Jason, Wrana, Jeffrey L., Schimmer, Aaron D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3260812/
https://www.ncbi.nlm.nih.gov/pubmed/21406729
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author Eberhard, Yanina
Gronda, Marcela
Hurren, Rose
Datti, Alessandro
MacLean, Neil
Ketela, Troy
Moffat, Jason
Wrana, Jeffrey L.
Schimmer, Aaron D.
author_facet Eberhard, Yanina
Gronda, Marcela
Hurren, Rose
Datti, Alessandro
MacLean, Neil
Ketela, Troy
Moffat, Jason
Wrana, Jeffrey L.
Schimmer, Aaron D.
author_sort Eberhard, Yanina
collection PubMed
description Evasion of death receptor ligand-induced apoptosis contributs to cancer development and progression. To better understand mechanisms conferring resistance to death ligands, we screened an siRNA library to identify sequences that sensitize resistant cells to fas activating antibody (CH-11). From this screen, we identified the Sterol-Regulatory Element-Binding Protein 1 (SREBP1), a transcription factor, which regulates genes involved in cholesterol and fatty acid synthesis including fatty acid synthase. Inhibition of SREBP1 sensitized PPC-1 and HeLa to the death receptor ligands CH-11 and TRAIL. In contrast, DU145 prostate cancer cells that are resistant to death ligands despite expressing the receptors on their cell surface remained resistant to CH-11 and TRAIL after knockdown of SREBP1. Consistent with the effects on cell viability, the addition of CH-11 activated caspases 3 and 8 in HeLa but not DU145 cells with silenced SREBP1. We demonstrated that knockdown of SREBP1 produced a marked decrease in fatty acid synthase expression. Furthermore, genetic or chemical inhibition of fatty acid synthase with shRNA or orlistat, respectively, recapitulated the effects of SREBP1 inhibition and sensitized HeLa but not DU145 cells to CH-11 and TRAIL. Sensitization to death receptor ligands by inhibition of fatty acid synthase was associated with activation of caspase 8 prior to caspase 9. Neither silencing of SREBP1 or fatty acid synthase changed basal expression of the core death receptor components Fas, caspase 8, FADD, caspase 3 or FLIP. Thus, inhibition of SREBP1 or its downstream target fatty acid synthase sensitizes resistant cells to death ligands.
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spelling pubmed-32608122012-01-18 Inhibition of SREBP1 sensitizes cells to death ligands Eberhard, Yanina Gronda, Marcela Hurren, Rose Datti, Alessandro MacLean, Neil Ketela, Troy Moffat, Jason Wrana, Jeffrey L. Schimmer, Aaron D. Oncotarget Research Papers Evasion of death receptor ligand-induced apoptosis contributs to cancer development and progression. To better understand mechanisms conferring resistance to death ligands, we screened an siRNA library to identify sequences that sensitize resistant cells to fas activating antibody (CH-11). From this screen, we identified the Sterol-Regulatory Element-Binding Protein 1 (SREBP1), a transcription factor, which regulates genes involved in cholesterol and fatty acid synthesis including fatty acid synthase. Inhibition of SREBP1 sensitized PPC-1 and HeLa to the death receptor ligands CH-11 and TRAIL. In contrast, DU145 prostate cancer cells that are resistant to death ligands despite expressing the receptors on their cell surface remained resistant to CH-11 and TRAIL after knockdown of SREBP1. Consistent with the effects on cell viability, the addition of CH-11 activated caspases 3 and 8 in HeLa but not DU145 cells with silenced SREBP1. We demonstrated that knockdown of SREBP1 produced a marked decrease in fatty acid synthase expression. Furthermore, genetic or chemical inhibition of fatty acid synthase with shRNA or orlistat, respectively, recapitulated the effects of SREBP1 inhibition and sensitized HeLa but not DU145 cells to CH-11 and TRAIL. Sensitization to death receptor ligands by inhibition of fatty acid synthase was associated with activation of caspase 8 prior to caspase 9. Neither silencing of SREBP1 or fatty acid synthase changed basal expression of the core death receptor components Fas, caspase 8, FADD, caspase 3 or FLIP. Thus, inhibition of SREBP1 or its downstream target fatty acid synthase sensitizes resistant cells to death ligands. Impact Journals LLC 2011-03-10 /pmc/articles/PMC3260812/ /pubmed/21406729 Text en Copyright: © 2011 Eberhard 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 Papers
Eberhard, Yanina
Gronda, Marcela
Hurren, Rose
Datti, Alessandro
MacLean, Neil
Ketela, Troy
Moffat, Jason
Wrana, Jeffrey L.
Schimmer, Aaron D.
Inhibition of SREBP1 sensitizes cells to death ligands
title Inhibition of SREBP1 sensitizes cells to death ligands
title_full Inhibition of SREBP1 sensitizes cells to death ligands
title_fullStr Inhibition of SREBP1 sensitizes cells to death ligands
title_full_unstemmed Inhibition of SREBP1 sensitizes cells to death ligands
title_short Inhibition of SREBP1 sensitizes cells to death ligands
title_sort inhibition of srebp1 sensitizes cells to death ligands
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3260812/
https://www.ncbi.nlm.nih.gov/pubmed/21406729
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