LSL-KrasG12D; LSL-Trp53R172H/+; Ink4 flox/+; Ptf1/p48-Cre mice are an applicable model for locally invasive and metastatic pancreatic cancer

被引:10
作者
Ma, Lixiang [1 ]
Saiyin, Hexige [2 ]
机构
[1] Shanghai Med Coll, Dept Anat Histol & Embryol, Shanghai, Peoples R China
[2] Fudan Univ, Sch Life Sci, Shanghai, Peoples R China
来源
PLOS ONE | 2017年 / 12卷 / 05期
关键词
ENGINEERED MOUSE MODELS; ONCOGENIC K-RAS; DUCTAL ADENOCARCINOMA; MUTANT P53; MESENCHYMAL TRANSITION; CELLS; PROGRESSION; CHEMORESISTANCE; KRAS(G12D); COOPERATE;
D O I
10.1371/journal.pone.0176844
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Pancreatic cancer (PC) accumulates multiple genetic mutations, including activating KRAS mutations and inactivating TP53, SMAD4 and CDKN2A mutations, during progression. The combination of mutant KRAS with a single inactivating TP53, SMAD4 or CDKN2A mutation in genetically engineered mouse models (GEMMs) showed that these mutations exert different synergistic effects in PC. However, the effect of the combination of TP53, CDKN2A and KRAS mutations on the trajectory of PC progression is unknown. Here, we report a GEMM that harbors KRAS (Kras(G12D)), TP53 (Trp53(R172H/+)), CDKN2A (Ink4(flox/+)) and Ptf1/ p48-Cre (KPIC) mutations. Histopathology showed that KPIC mice developed adenocarcinoma that strongly resembled the pathology of human PC, characterized by rich desmoplastic stroma and low microvascularity. The median survival of KPIC mice was longer than that of LSL-Kras(G12D); Ink4(flox/flox); Ptf1/p48-Cre mice (KIC) (89 vs 62 days) and shorter than that of KRAS (Kras(G12D)), TP53 (Trp53(R172H/+)) and Ptf1/p48-Cre (KPC) mice. Moreover, the neoplastic cells of KPIC mice were epithelial, highly proliferative tumor cells that exhibited ERK and MAPK pathway activation and high glucose uptake. Isolated neoplastic cells from spontaneous KPIC tumors showed all molecular profiles and cellular behaviors of spontaneous KPIC tumors, including epithelial-mesenchymal transition (EMT) under drug stress as well as tumorigenic, metastatic and invasive abilities in immunocompetent mice. Furthermore, orthotopic and metastatic tumors of KPIC cells almost recapitulated the pathology of spontaneous KPIC tumors. These data show that in addition to spontaneous KPIC tumors, KPIC cells are a valuable tool for preclinical studies of locally invasive and metastatic PC.
引用
收藏
页数:17
相关论文
共 43 条
  • [1] Gain-of-function mutant p53 but not p53 deletion promotes head and neck cancer progression in response to oncogenic K-ras
    Acin, Sergio
    Li, Zhongyou
    Mejia, Olga
    Roop, Dennis R.
    El-Naggar, Adel K.
    Caulin, Carlos
    [J]. JOURNAL OF PATHOLOGY, 2011, 225 (04) : 479 - 489
  • [2] Activated Kras and Ink4a/Arf deficiency cooperate to produce metastatic pancreatic ductal adenocarcinoma
    Aguirre, AJ
    Bardeesy, N
    Sinha, M
    Lopez, L
    Tuveson, DA
    Horner, J
    Redston, MS
    DePinho, RA
    [J]. GENES & DEVELOPMENT, 2003, 17 (24) : 3112 - 3126
  • [3] Improving survival by exploiting tumour dependence on stabilized mutant p53 for treatment
    Alexandrova, E. M.
    Yallowitz, A. R.
    Li, D.
    Xu, S.
    Schulz, R.
    Proia, D. A.
    Lozano, G.
    Dobbelstein, M.
    Moll, U. M.
    [J]. NATURE, 2015, 523 (7560) : 352 - +
  • [4] The clinical usefulness of 18-fluorodeoxyglucose positron emission tomography in the differential diagnosis, staging, and response evaluation after concurrent chemoradiotherapy for pancreatic cancer
    Bang, Seungmin
    Chung, Hye Won
    Park, Seung Woo
    Chung, Jae Bock
    Yun, Mijin
    Lee, Jong Doo
    Song, Si Young
    [J]. JOURNAL OF CLINICAL GASTROENTEROLOGY, 2006, 40 (10) : 923 - 929
  • [5] Both p16Ink4a and the p19Arf-p53 pathway constrain progression of pancreatic adenocarcinoma in the mouse
    Bardeesy, N
    Aguirre, AJ
    Chu, GC
    Cheng, KH
    Lopez, LV
    Hezel, AF
    Feng, B
    Brennan, C
    Weissleder, R
    Mahmood, U
    Hanahan, D
    Redston, MS
    Chin, L
    DePinho, RA
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2006, 103 (15) : 5947 - 5952
  • [6] Stromal biology of pancreatic cancer
    Chu, Gerald C.
    Kimmelman, Alec C.
    Hezel, Aram F.
    DePinho, Ronald A.
    [J]. JOURNAL OF CELLULAR BIOCHEMISTRY, 2007, 101 (04) : 887 - 907
  • [7] Macropinocytosis of protein is an amino acid supply route in Ras-transformed cells
    Commisso, Cosimo
    Davidson, Shawn M.
    Soydaner-Azeloglu, Rengin G.
    Parker, Seth J.
    Kamphorst, Jurre J.
    Hackett, Sean
    Grabocka, Elda
    Nofal, Michel
    Drebin, Jeffrey A.
    Thompson, Craig B.
    Rabinowitz, Joshua D.
    Metallo, Christian M.
    Vander Heiden, Matthew G.
    Bar-Sagi, Dafna
    [J]. NATURE, 2013, 497 (7451) : 633 - +
  • [8] Genetic Progression of Pancreatic Cancer
    Cowan, Robert W.
    Maitra, Anirban
    [J]. CANCER JOURNAL, 2014, 20 (01) : 80 - 84
  • [9] The Pancreas Cancer Microenvironment
    Feig, Christine
    Gopinathan, Aarthi
    Neesse, Albrecht
    Chan, Derek S.
    Cook, Natalie
    Tuveson, David A.
    [J]. CLINICAL CANCER RESEARCH, 2012, 18 (16) : 4266 - 4276
  • [10] Mutant p53 stimulates chemoresistance of pancreatic adenocarcinoma cells to gemcitabine
    Fiorini, Claudia
    Cordani, Marco
    Padroni, Chiara
    Blandino, Giovanni
    Di Agostino, Silvia
    Donadelli, Massimo
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH, 2015, 1853 (01): : 89 - 100