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ARSENIC TRIOXIDE INDUCES A BECLIN-1 INDEPENDENT AUTOPHAGIC PATHWAY VIA MODULATION OF SNON/SKIL EXPRESSION IN OVARIAN CARCINOMA CELLS

Arsenic trioxide (As(2)O(3)), used to treat promyelocytic leukemia, triggers cell death via unknown mechanisms. To further our understanding of As(2)O(3)-induced death, we investigated its effects on transforming growth factor-β (TGFβ) signaling mediators in ovarian cells. Dysregulated TGFβ signalin...

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Autores principales: Smith, Dawn, Patel, Shetal, Raffoul, Fadi, Haller, Edward, Mills, Gordon B., Nanjundan, Meera
Formato: Texto
Lenguaje:English
Publicado: 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2932795/
https://www.ncbi.nlm.nih.gov/pubmed/20508647
http://dx.doi.org/10.1038/cdd.2010.53
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author Smith, Dawn
Patel, Shetal
Raffoul, Fadi
Haller, Edward
Mills, Gordon B.
Nanjundan, Meera
author_facet Smith, Dawn
Patel, Shetal
Raffoul, Fadi
Haller, Edward
Mills, Gordon B.
Nanjundan, Meera
author_sort Smith, Dawn
collection PubMed
description Arsenic trioxide (As(2)O(3)), used to treat promyelocytic leukemia, triggers cell death via unknown mechanisms. To further our understanding of As(2)O(3)-induced death, we investigated its effects on transforming growth factor-β (TGFβ) signaling mediators in ovarian cells. Dysregulated TGFβ signaling is a characteristic of ovarian cancers. As(2)O(3) reduced the protein expression of EVI1, TAK1, SMAD2/3, and TGFβRII while increasing SnoN/SkiL. EVI1 protein was modulated by treatment with the proteosome inhibitors, MG132 and PS-341/Velcade, suggesting that degradation occurs via the ubiquitin-proteosome pathway. The sensitivity of ovarian cells to As(2)O(3)–induced apoptosis correlated with expression of multidrug resistance protein 1. Interestingly, expression of SnoN was similar to LC3-II (autophagy marker) which increased with induction of cytoplasmic vacuolation preceding apoptosis. These vesicles were identified as autophagosomes based on transmission electron microscopy and immunofluorescence staining with EGFP-LC3. The addition of N-acetyl-L-cysteine (ROS scavenger) to As(2)O(3)-treated cells reversed changes in SnoN protein and the autophagic/apoptotic response. In contrast to Beclin-1 knockdown, siRNA targeting ATG5, ATG7, and hVps34 markedly reduced autophagy in As(2)O(3)-treated ovarian carcinoma cells. Further, treatment with SnoN siRNA markedly decreased LC3-II levels and increased PARP degradation (an apoptosis marker). Collectively, these findings suggest that As(2)O(3) induces a Beclin-1 independent autophagic pathway in ovarian carcinoma cells and implicates SnoN in promoting As(2)O(3)-mediated autophagic cell survival.
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spelling pubmed-29327952011-06-01 ARSENIC TRIOXIDE INDUCES A BECLIN-1 INDEPENDENT AUTOPHAGIC PATHWAY VIA MODULATION OF SNON/SKIL EXPRESSION IN OVARIAN CARCINOMA CELLS Smith, Dawn Patel, Shetal Raffoul, Fadi Haller, Edward Mills, Gordon B. Nanjundan, Meera Cell Death Differ Article Arsenic trioxide (As(2)O(3)), used to treat promyelocytic leukemia, triggers cell death via unknown mechanisms. To further our understanding of As(2)O(3)-induced death, we investigated its effects on transforming growth factor-β (TGFβ) signaling mediators in ovarian cells. Dysregulated TGFβ signaling is a characteristic of ovarian cancers. As(2)O(3) reduced the protein expression of EVI1, TAK1, SMAD2/3, and TGFβRII while increasing SnoN/SkiL. EVI1 protein was modulated by treatment with the proteosome inhibitors, MG132 and PS-341/Velcade, suggesting that degradation occurs via the ubiquitin-proteosome pathway. The sensitivity of ovarian cells to As(2)O(3)–induced apoptosis correlated with expression of multidrug resistance protein 1. Interestingly, expression of SnoN was similar to LC3-II (autophagy marker) which increased with induction of cytoplasmic vacuolation preceding apoptosis. These vesicles were identified as autophagosomes based on transmission electron microscopy and immunofluorescence staining with EGFP-LC3. The addition of N-acetyl-L-cysteine (ROS scavenger) to As(2)O(3)-treated cells reversed changes in SnoN protein and the autophagic/apoptotic response. In contrast to Beclin-1 knockdown, siRNA targeting ATG5, ATG7, and hVps34 markedly reduced autophagy in As(2)O(3)-treated ovarian carcinoma cells. Further, treatment with SnoN siRNA markedly decreased LC3-II levels and increased PARP degradation (an apoptosis marker). Collectively, these findings suggest that As(2)O(3) induces a Beclin-1 independent autophagic pathway in ovarian carcinoma cells and implicates SnoN in promoting As(2)O(3)-mediated autophagic cell survival. 2010-05-28 2010-12 /pmc/articles/PMC2932795/ /pubmed/20508647 http://dx.doi.org/10.1038/cdd.2010.53 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Smith, Dawn
Patel, Shetal
Raffoul, Fadi
Haller, Edward
Mills, Gordon B.
Nanjundan, Meera
ARSENIC TRIOXIDE INDUCES A BECLIN-1 INDEPENDENT AUTOPHAGIC PATHWAY VIA MODULATION OF SNON/SKIL EXPRESSION IN OVARIAN CARCINOMA CELLS
title ARSENIC TRIOXIDE INDUCES A BECLIN-1 INDEPENDENT AUTOPHAGIC PATHWAY VIA MODULATION OF SNON/SKIL EXPRESSION IN OVARIAN CARCINOMA CELLS
title_full ARSENIC TRIOXIDE INDUCES A BECLIN-1 INDEPENDENT AUTOPHAGIC PATHWAY VIA MODULATION OF SNON/SKIL EXPRESSION IN OVARIAN CARCINOMA CELLS
title_fullStr ARSENIC TRIOXIDE INDUCES A BECLIN-1 INDEPENDENT AUTOPHAGIC PATHWAY VIA MODULATION OF SNON/SKIL EXPRESSION IN OVARIAN CARCINOMA CELLS
title_full_unstemmed ARSENIC TRIOXIDE INDUCES A BECLIN-1 INDEPENDENT AUTOPHAGIC PATHWAY VIA MODULATION OF SNON/SKIL EXPRESSION IN OVARIAN CARCINOMA CELLS
title_short ARSENIC TRIOXIDE INDUCES A BECLIN-1 INDEPENDENT AUTOPHAGIC PATHWAY VIA MODULATION OF SNON/SKIL EXPRESSION IN OVARIAN CARCINOMA CELLS
title_sort arsenic trioxide induces a beclin-1 independent autophagic pathway via modulation of snon/skil expression in ovarian carcinoma cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2932795/
https://www.ncbi.nlm.nih.gov/pubmed/20508647
http://dx.doi.org/10.1038/cdd.2010.53
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