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Ebselen inhibits QSOX1 enzymatic activity and suppresses invasion of pancreatic and renal cancer cell lines

Quiescin sulfhydryl oxidase 1 (QSOX1) is a highly conserved disulfide bond-generating enzyme that is overexpressed in diverse tumor types. Its enzymatic activity promotes the growth and invasion of tumor cells and alters extracellular matrix composition. In a nude mouse-human tumor xenograft model,...

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Autores principales: Hanavan, Paul D., Borges, Chad R., Katchman, Benjamin A., Faigel, Douglas O., Ho, Thai H., Ma, Chen-Ting, Sergienko, Eduard A., Meurice, Nathalie, Petit, Joachim L., Lake, Douglas F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4621900/
https://www.ncbi.nlm.nih.gov/pubmed/26158899
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author Hanavan, Paul D.
Borges, Chad R.
Katchman, Benjamin A.
Faigel, Douglas O.
Ho, Thai H.
Ma, Chen-Ting
Sergienko, Eduard A.
Meurice, Nathalie
Petit, Joachim L.
Lake, Douglas F.
author_facet Hanavan, Paul D.
Borges, Chad R.
Katchman, Benjamin A.
Faigel, Douglas O.
Ho, Thai H.
Ma, Chen-Ting
Sergienko, Eduard A.
Meurice, Nathalie
Petit, Joachim L.
Lake, Douglas F.
author_sort Hanavan, Paul D.
collection PubMed
description Quiescin sulfhydryl oxidase 1 (QSOX1) is a highly conserved disulfide bond-generating enzyme that is overexpressed in diverse tumor types. Its enzymatic activity promotes the growth and invasion of tumor cells and alters extracellular matrix composition. In a nude mouse-human tumor xenograft model, tumors containing shRNA for QSOX1 grew significantly more slowly than controls, suggesting that QSOX1 supports a proliferative phenotype in vivo. High throughput screening experiments identified ebselen as an in vitro inhibitor of QSOX1 enzymatic activity. Ebselen treatment of pancreatic and renal cancer cell lines stalled tumor growth and inhibited invasion through Matrigel in vitro. Daily oral treatment with ebselen resulted in a 58% reduction in tumor growth in mice bearing human pancreatic tumor xenografts compared to controls. Mass spectrometric analysis of ebselen-treated QSOX1 mechanistically revealed that C165 and C237 of QSOX1 covalently bound to ebselen. This report details the anti-neoplastic properties of ebselen in pancreatic and renal cancer cell lines. The results here offer a “proof-of-principle” that enzymatic inhibition of QSOX1 may have clinical relevancy.
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spelling pubmed-46219002015-12-02 Ebselen inhibits QSOX1 enzymatic activity and suppresses invasion of pancreatic and renal cancer cell lines Hanavan, Paul D. Borges, Chad R. Katchman, Benjamin A. Faigel, Douglas O. Ho, Thai H. Ma, Chen-Ting Sergienko, Eduard A. Meurice, Nathalie Petit, Joachim L. Lake, Douglas F. Oncotarget Research Paper Quiescin sulfhydryl oxidase 1 (QSOX1) is a highly conserved disulfide bond-generating enzyme that is overexpressed in diverse tumor types. Its enzymatic activity promotes the growth and invasion of tumor cells and alters extracellular matrix composition. In a nude mouse-human tumor xenograft model, tumors containing shRNA for QSOX1 grew significantly more slowly than controls, suggesting that QSOX1 supports a proliferative phenotype in vivo. High throughput screening experiments identified ebselen as an in vitro inhibitor of QSOX1 enzymatic activity. Ebselen treatment of pancreatic and renal cancer cell lines stalled tumor growth and inhibited invasion through Matrigel in vitro. Daily oral treatment with ebselen resulted in a 58% reduction in tumor growth in mice bearing human pancreatic tumor xenografts compared to controls. Mass spectrometric analysis of ebselen-treated QSOX1 mechanistically revealed that C165 and C237 of QSOX1 covalently bound to ebselen. This report details the anti-neoplastic properties of ebselen in pancreatic and renal cancer cell lines. The results here offer a “proof-of-principle” that enzymatic inhibition of QSOX1 may have clinical relevancy. Impact Journals LLC 2015-06-01 /pmc/articles/PMC4621900/ /pubmed/26158899 Text en Copyright: © 2015 Hanavan 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
Hanavan, Paul D.
Borges, Chad R.
Katchman, Benjamin A.
Faigel, Douglas O.
Ho, Thai H.
Ma, Chen-Ting
Sergienko, Eduard A.
Meurice, Nathalie
Petit, Joachim L.
Lake, Douglas F.
Ebselen inhibits QSOX1 enzymatic activity and suppresses invasion of pancreatic and renal cancer cell lines
title Ebselen inhibits QSOX1 enzymatic activity and suppresses invasion of pancreatic and renal cancer cell lines
title_full Ebselen inhibits QSOX1 enzymatic activity and suppresses invasion of pancreatic and renal cancer cell lines
title_fullStr Ebselen inhibits QSOX1 enzymatic activity and suppresses invasion of pancreatic and renal cancer cell lines
title_full_unstemmed Ebselen inhibits QSOX1 enzymatic activity and suppresses invasion of pancreatic and renal cancer cell lines
title_short Ebselen inhibits QSOX1 enzymatic activity and suppresses invasion of pancreatic and renal cancer cell lines
title_sort ebselen inhibits qsox1 enzymatic activity and suppresses invasion of pancreatic and renal cancer cell lines
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4621900/
https://www.ncbi.nlm.nih.gov/pubmed/26158899
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