TY - JOUR
T1 - Prox1-Heterozygosis Sensitizes the Pancreas to Oncogenic Kras-Induced Neoplastic Transformation
AU - Drosos, Yiannis
AU - Neale, Geoffrey
AU - Ye, Jianming
AU - Paul, Leena
AU - Kuliyev, Emin
AU - Maitra, Anirban
AU - Means, Anna L.
AU - Washington, M. Kay
AU - Rehg, Jerold
AU - Finkelstein, David B.
AU - Sosa-Pineda, Beatriz
N1 - Funding Information:
We thank the following investigators for providing mouse strains: G. Oliver ( Prox1 loxP/+ mice), C.V. Wright ( Ptf1a +/cre mice), D. Tuveson ( Kras G12D mice), and D. Melton, G. Gonqiang and the MMRRC ( Pdx1-Cre EARLY mice). We also thank J.J. Westmoreland for helping generate KC and KCH mice; R.K. Geltink and G. Grosveld for providing reagents and for expert advice; P. Johnson and D. Williams for the Aperio slide scanning; the Hartwell Center, the Veterinary Pathology Core, and the Cell and Tissue Imaging Core of St. Jude; Vani Shanker for editing the manuscript; and the American Lebanese Syrian Associated Charities (ALSAC) and the National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health (grant RO1DK060542), for funding these studies.
Publisher Copyright:
© 2016 The Authors.
PY - 2016
Y1 - 2016
N2 - The current paradigm of pancreatic neoplastic transformation proposes an initial step whereby acinar cells convert into acinar-to-ductal metaplasias, followed by progression of these lesions into neoplasias under sustained oncogenic activity and inflammation. Understanding the molecular mechanisms driving these processes is crucial to the early diagnostic and prevention of pancreatic cancer. Emerging evidence indicates that transcription factors that control exocrine pancreatic development could have either, protective or facilitating roles in the formation of preneoplasias and neoplasias in the pancreas. We previously identified that the homeodomain transcription factor Prox1 is a novel regulator of mouse exocrine pancreas development. Here we investigated whether Prox1 function participates in early neoplastic transformation using in vivo, in vitro and in silico approaches. We found that Prox1 expression is transiently re-activated in acinar cells undergoing dedifferentiation and acinar-to-ductal metaplastic conversion. In contrast, Prox1 expression is largely absent in neoplasias and tumors in the pancreas of mice and humans. We also uncovered that Prox1-heterozygosis markedly increases the formation of acinar-to-ductal-metaplasias and early neoplasias, and enhances features associated with inflammation, in mouse pancreatic tissues expressing oncogenic Kras. Furthermore, we discovered that Prox1-heterozygosis increases tissue damage and delays recovery from inflammation in pancreata of mice injected with caerulein. These results are the first demonstration that Prox1 activity protects pancreatic cells from acute tissue damage and early neoplastic transformation. Additional data in our study indicate that this novel role of Prox1 involves suppression of pathways associated with inflammatory responses and cell invasiveness.
AB - The current paradigm of pancreatic neoplastic transformation proposes an initial step whereby acinar cells convert into acinar-to-ductal metaplasias, followed by progression of these lesions into neoplasias under sustained oncogenic activity and inflammation. Understanding the molecular mechanisms driving these processes is crucial to the early diagnostic and prevention of pancreatic cancer. Emerging evidence indicates that transcription factors that control exocrine pancreatic development could have either, protective or facilitating roles in the formation of preneoplasias and neoplasias in the pancreas. We previously identified that the homeodomain transcription factor Prox1 is a novel regulator of mouse exocrine pancreas development. Here we investigated whether Prox1 function participates in early neoplastic transformation using in vivo, in vitro and in silico approaches. We found that Prox1 expression is transiently re-activated in acinar cells undergoing dedifferentiation and acinar-to-ductal metaplastic conversion. In contrast, Prox1 expression is largely absent in neoplasias and tumors in the pancreas of mice and humans. We also uncovered that Prox1-heterozygosis markedly increases the formation of acinar-to-ductal-metaplasias and early neoplasias, and enhances features associated with inflammation, in mouse pancreatic tissues expressing oncogenic Kras. Furthermore, we discovered that Prox1-heterozygosis increases tissue damage and delays recovery from inflammation in pancreata of mice injected with caerulein. These results are the first demonstration that Prox1 activity protects pancreatic cells from acute tissue damage and early neoplastic transformation. Additional data in our study indicate that this novel role of Prox1 involves suppression of pathways associated with inflammatory responses and cell invasiveness.
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U2 - 10.1016/j.neo.2016.02.002
DO - 10.1016/j.neo.2016.02.002
M3 - Article
C2 - 26992918
AN - SCOPUS:84963958965
SN - 1522-8002
VL - 18
SP - 172
EP - 184
JO - Neoplasia
JF - Neoplasia
IS - 3
ER -