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Hedgehog pathway dysregulation contributes to the pathogenesis of human gastrointestinal stromal tumors via GLI-mediated activation of KIT expression

Gastrointestinal stromal tumors (GIST) arise within the interstitial cell of Cajal (ICC) lineage due to activating KIT/PDGFRA mutations. Both ICC and GIST possess primary cilia (PC), which coordinate PDGFRA and Hedgehog signaling, regulators of gastrointestinal mesenchymal development. Therefore, we...

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Autores principales: Tang, Chih-Min, Lee, Tracy E., Syed, Sabriya A., Burgoyne, Adam M., Leonard, Stephanie Y., Gao, Fei, Chan, Jonathan C., Shi, Eileen, Chmielecki, Juliann, Morosini, Deborah, Wang, Kai, Ross, Jeffrey S., Kendrick, Michael L., Bardsley, Michael R., De Siena, Martina, Mao, Junhao, Harismendy, Olivier, Ordog, Tamas, Sicklick, Jason K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5346634/
https://www.ncbi.nlm.nih.gov/pubmed/27793025
http://dx.doi.org/10.18632/oncotarget.12909
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author Tang, Chih-Min
Lee, Tracy E.
Syed, Sabriya A.
Burgoyne, Adam M.
Leonard, Stephanie Y.
Gao, Fei
Chan, Jonathan C.
Shi, Eileen
Chmielecki, Juliann
Morosini, Deborah
Wang, Kai
Ross, Jeffrey S.
Kendrick, Michael L.
Bardsley, Michael R.
De Siena, Martina
Mao, Junhao
Harismendy, Olivier
Ordog, Tamas
Sicklick, Jason K.
author_facet Tang, Chih-Min
Lee, Tracy E.
Syed, Sabriya A.
Burgoyne, Adam M.
Leonard, Stephanie Y.
Gao, Fei
Chan, Jonathan C.
Shi, Eileen
Chmielecki, Juliann
Morosini, Deborah
Wang, Kai
Ross, Jeffrey S.
Kendrick, Michael L.
Bardsley, Michael R.
De Siena, Martina
Mao, Junhao
Harismendy, Olivier
Ordog, Tamas
Sicklick, Jason K.
author_sort Tang, Chih-Min
collection PubMed
description Gastrointestinal stromal tumors (GIST) arise within the interstitial cell of Cajal (ICC) lineage due to activating KIT/PDGFRA mutations. Both ICC and GIST possess primary cilia (PC), which coordinate PDGFRA and Hedgehog signaling, regulators of gastrointestinal mesenchymal development. Therefore, we hypothesized that Hedgehog signaling may be altered in human GIST and controls KIT expression. Quantitative RT-PCR, microarrays, and next generation sequencing were used to describe Hedgehog/PC-related genes in purified human ICC and GIST. Genetic and pharmacologic approaches were employed to investigate the effects of GLI manipulation on KIT expression and GIST cell viability. We report that Hedgehog pathway and PC components are expressed in ICC and GIST and subject to dysregulation during GIST oncogenesis, irrespective of KIT/PDGFRA mutation status. Using genomic profiling, 10.2% of 186 GIST studied had potentially deleterious genomic alterations in 5 Hedgehog-related genes analyzed, including in the PTCH1 tumor suppressor (1.6%). Expression of the predominantly repressive GLI isoform, GLI3, was inversely correlated with KIT mRNA levels in GIST cells and non-KIT/non-PDGFRA mutant GIST. Overexpression of the 83-kDa repressive form of GLI3 or small interfering RNA-mediated knockdown of the activating isoforms GLI1/2 reduced KIT mRNA. Treatment with GLI1/2 inhibitors, including arsenic trioxide, significantly increased GLI3 binding to the KIT promoter, decreased KIT expression, and reduced viability in imatinib-sensitive and imatinib-resistant GIST cells. These data offer new evidence that genes necessary for Hedgehog signaling and PC function in ICC are dysregulated in GIST. Hedgehog signaling activates KIT expression irrespective of mutation status, offering a novel approach to treat imatinib-resistant GIST.
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spelling pubmed-53466342017-03-30 Hedgehog pathway dysregulation contributes to the pathogenesis of human gastrointestinal stromal tumors via GLI-mediated activation of KIT expression Tang, Chih-Min Lee, Tracy E. Syed, Sabriya A. Burgoyne, Adam M. Leonard, Stephanie Y. Gao, Fei Chan, Jonathan C. Shi, Eileen Chmielecki, Juliann Morosini, Deborah Wang, Kai Ross, Jeffrey S. Kendrick, Michael L. Bardsley, Michael R. De Siena, Martina Mao, Junhao Harismendy, Olivier Ordog, Tamas Sicklick, Jason K. Oncotarget Priority Research Paper Gastrointestinal stromal tumors (GIST) arise within the interstitial cell of Cajal (ICC) lineage due to activating KIT/PDGFRA mutations. Both ICC and GIST possess primary cilia (PC), which coordinate PDGFRA and Hedgehog signaling, regulators of gastrointestinal mesenchymal development. Therefore, we hypothesized that Hedgehog signaling may be altered in human GIST and controls KIT expression. Quantitative RT-PCR, microarrays, and next generation sequencing were used to describe Hedgehog/PC-related genes in purified human ICC and GIST. Genetic and pharmacologic approaches were employed to investigate the effects of GLI manipulation on KIT expression and GIST cell viability. We report that Hedgehog pathway and PC components are expressed in ICC and GIST and subject to dysregulation during GIST oncogenesis, irrespective of KIT/PDGFRA mutation status. Using genomic profiling, 10.2% of 186 GIST studied had potentially deleterious genomic alterations in 5 Hedgehog-related genes analyzed, including in the PTCH1 tumor suppressor (1.6%). Expression of the predominantly repressive GLI isoform, GLI3, was inversely correlated with KIT mRNA levels in GIST cells and non-KIT/non-PDGFRA mutant GIST. Overexpression of the 83-kDa repressive form of GLI3 or small interfering RNA-mediated knockdown of the activating isoforms GLI1/2 reduced KIT mRNA. Treatment with GLI1/2 inhibitors, including arsenic trioxide, significantly increased GLI3 binding to the KIT promoter, decreased KIT expression, and reduced viability in imatinib-sensitive and imatinib-resistant GIST cells. These data offer new evidence that genes necessary for Hedgehog signaling and PC function in ICC are dysregulated in GIST. Hedgehog signaling activates KIT expression irrespective of mutation status, offering a novel approach to treat imatinib-resistant GIST. Impact Journals LLC 2016-10-25 /pmc/articles/PMC5346634/ /pubmed/27793025 http://dx.doi.org/10.18632/oncotarget.12909 Text en Copyright: © 2016 Tang et al. http://creativecommons.org/licenses/by/3.0/ 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 Priority Research Paper
Tang, Chih-Min
Lee, Tracy E.
Syed, Sabriya A.
Burgoyne, Adam M.
Leonard, Stephanie Y.
Gao, Fei
Chan, Jonathan C.
Shi, Eileen
Chmielecki, Juliann
Morosini, Deborah
Wang, Kai
Ross, Jeffrey S.
Kendrick, Michael L.
Bardsley, Michael R.
De Siena, Martina
Mao, Junhao
Harismendy, Olivier
Ordog, Tamas
Sicklick, Jason K.
Hedgehog pathway dysregulation contributes to the pathogenesis of human gastrointestinal stromal tumors via GLI-mediated activation of KIT expression
title Hedgehog pathway dysregulation contributes to the pathogenesis of human gastrointestinal stromal tumors via GLI-mediated activation of KIT expression
title_full Hedgehog pathway dysregulation contributes to the pathogenesis of human gastrointestinal stromal tumors via GLI-mediated activation of KIT expression
title_fullStr Hedgehog pathway dysregulation contributes to the pathogenesis of human gastrointestinal stromal tumors via GLI-mediated activation of KIT expression
title_full_unstemmed Hedgehog pathway dysregulation contributes to the pathogenesis of human gastrointestinal stromal tumors via GLI-mediated activation of KIT expression
title_short Hedgehog pathway dysregulation contributes to the pathogenesis of human gastrointestinal stromal tumors via GLI-mediated activation of KIT expression
title_sort hedgehog pathway dysregulation contributes to the pathogenesis of human gastrointestinal stromal tumors via gli-mediated activation of kit expression
topic Priority Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5346634/
https://www.ncbi.nlm.nih.gov/pubmed/27793025
http://dx.doi.org/10.18632/oncotarget.12909
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