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Pancreatic HIF2α Stabilization Leads to Chronic Pancreatitis and Predisposes to Mucinous Cystic Neoplasm

BACKGROUND & AIMS: Tissue hypoxia controls cell differentiation in the embryonic pancreas, and promotes tumor growth in pancreatic cancer. The cellular response to hypoxia is controlled by the hypoxia-inducible factor (HIF) proteins, including HIF2α. Previous studies of HIF action in the pancrea...

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Autores principales: Schofield, Heather K., Tandon, Manuj, Park, Min-Jung, Halbrook, Christopher J., Ramakrishnan, Sadeesh K., Kim, Esther C., Shi, Jiaqi, Omary, M. Bishr, Shah, Yatrik M., Esni, Farzad, Pasca di Magliano, Marina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5904051/
https://www.ncbi.nlm.nih.gov/pubmed/29693047
http://dx.doi.org/10.1016/j.jcmgh.2017.10.008
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author Schofield, Heather K.
Tandon, Manuj
Park, Min-Jung
Halbrook, Christopher J.
Ramakrishnan, Sadeesh K.
Kim, Esther C.
Shi, Jiaqi
Omary, M. Bishr
Shah, Yatrik M.
Esni, Farzad
Pasca di Magliano, Marina
author_facet Schofield, Heather K.
Tandon, Manuj
Park, Min-Jung
Halbrook, Christopher J.
Ramakrishnan, Sadeesh K.
Kim, Esther C.
Shi, Jiaqi
Omary, M. Bishr
Shah, Yatrik M.
Esni, Farzad
Pasca di Magliano, Marina
author_sort Schofield, Heather K.
collection PubMed
description BACKGROUND & AIMS: Tissue hypoxia controls cell differentiation in the embryonic pancreas, and promotes tumor growth in pancreatic cancer. The cellular response to hypoxia is controlled by the hypoxia-inducible factor (HIF) proteins, including HIF2α. Previous studies of HIF action in the pancreas have relied on loss-of-function mouse models, and the effects of HIF2α expression in the pancreas have remained undefined. METHODS: We developed several transgenic mouse models based on the expression of an oxygen-stable form of HIF2α, or indirect stabilization of HIF proteins though deletion of von Hippel-Lindau, thus preventing HIF degradation. Furthermore, we crossed both sets of animals into mice expressing oncogenic Kras(G12D) in the pancreas. RESULTS: We show that HIF2α is not expressed in the normal human pancreas, however, it is up-regulated in human chronic pancreatitis. Deletion of von Hippel-Lindau or stabilization of HIF2α in mouse pancreata led to the development of chronic pancreatitis. Importantly, pancreatic HIF1α stabilization did not disrupt the pancreatic parenchyma, indicating that the chronic pancreatitis phenotype is specific to HIF2α. In the presence of oncogenic Kras, HIF2α stabilization drove the formation of cysts resembling mucinous cystic neoplasm (MCN) in humans. Mechanistically, we show that the pancreatitis phenotype is linked to expression of multiple inflammatory cytokines and activation of the unfolded protein response. Conversely, MCN formation is linked to activation of Wnt signaling, a feature of human MCN. CONCLUSIONS: We show that pancreatic HIF2α stabilization disrupts pancreatic homeostasis, leading to chronic pancreatitis, and, in the context of oncogenic Kras, MCN formation. These findings provide new mouse models of both chronic pancreatitis and MCN, as well as illustrate the importance of hypoxia signaling in the pancreas.
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spelling pubmed-59040512018-04-24 Pancreatic HIF2α Stabilization Leads to Chronic Pancreatitis and Predisposes to Mucinous Cystic Neoplasm Schofield, Heather K. Tandon, Manuj Park, Min-Jung Halbrook, Christopher J. Ramakrishnan, Sadeesh K. Kim, Esther C. Shi, Jiaqi Omary, M. Bishr Shah, Yatrik M. Esni, Farzad Pasca di Magliano, Marina Cell Mol Gastroenterol Hepatol Original Research BACKGROUND & AIMS: Tissue hypoxia controls cell differentiation in the embryonic pancreas, and promotes tumor growth in pancreatic cancer. The cellular response to hypoxia is controlled by the hypoxia-inducible factor (HIF) proteins, including HIF2α. Previous studies of HIF action in the pancreas have relied on loss-of-function mouse models, and the effects of HIF2α expression in the pancreas have remained undefined. METHODS: We developed several transgenic mouse models based on the expression of an oxygen-stable form of HIF2α, or indirect stabilization of HIF proteins though deletion of von Hippel-Lindau, thus preventing HIF degradation. Furthermore, we crossed both sets of animals into mice expressing oncogenic Kras(G12D) in the pancreas. RESULTS: We show that HIF2α is not expressed in the normal human pancreas, however, it is up-regulated in human chronic pancreatitis. Deletion of von Hippel-Lindau or stabilization of HIF2α in mouse pancreata led to the development of chronic pancreatitis. Importantly, pancreatic HIF1α stabilization did not disrupt the pancreatic parenchyma, indicating that the chronic pancreatitis phenotype is specific to HIF2α. In the presence of oncogenic Kras, HIF2α stabilization drove the formation of cysts resembling mucinous cystic neoplasm (MCN) in humans. Mechanistically, we show that the pancreatitis phenotype is linked to expression of multiple inflammatory cytokines and activation of the unfolded protein response. Conversely, MCN formation is linked to activation of Wnt signaling, a feature of human MCN. CONCLUSIONS: We show that pancreatic HIF2α stabilization disrupts pancreatic homeostasis, leading to chronic pancreatitis, and, in the context of oncogenic Kras, MCN formation. These findings provide new mouse models of both chronic pancreatitis and MCN, as well as illustrate the importance of hypoxia signaling in the pancreas. Elsevier 2017-11-10 /pmc/articles/PMC5904051/ /pubmed/29693047 http://dx.doi.org/10.1016/j.jcmgh.2017.10.008 Text en © 2018 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Research
Schofield, Heather K.
Tandon, Manuj
Park, Min-Jung
Halbrook, Christopher J.
Ramakrishnan, Sadeesh K.
Kim, Esther C.
Shi, Jiaqi
Omary, M. Bishr
Shah, Yatrik M.
Esni, Farzad
Pasca di Magliano, Marina
Pancreatic HIF2α Stabilization Leads to Chronic Pancreatitis and Predisposes to Mucinous Cystic Neoplasm
title Pancreatic HIF2α Stabilization Leads to Chronic Pancreatitis and Predisposes to Mucinous Cystic Neoplasm
title_full Pancreatic HIF2α Stabilization Leads to Chronic Pancreatitis and Predisposes to Mucinous Cystic Neoplasm
title_fullStr Pancreatic HIF2α Stabilization Leads to Chronic Pancreatitis and Predisposes to Mucinous Cystic Neoplasm
title_full_unstemmed Pancreatic HIF2α Stabilization Leads to Chronic Pancreatitis and Predisposes to Mucinous Cystic Neoplasm
title_short Pancreatic HIF2α Stabilization Leads to Chronic Pancreatitis and Predisposes to Mucinous Cystic Neoplasm
title_sort pancreatic hif2α stabilization leads to chronic pancreatitis and predisposes to mucinous cystic neoplasm
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5904051/
https://www.ncbi.nlm.nih.gov/pubmed/29693047
http://dx.doi.org/10.1016/j.jcmgh.2017.10.008
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