Literature DB >> 21558393

Pancreatic ductal adenocarcinoma mice lacking mucin 1 have a profound defect in tumor growth and metastasis.

Dahlia M Besmer1, Jennifer M Curry, Lopamudra D Roy, Teresa L Tinder, Mahnaz Sahraei, Jorge Schettini, Sun-Il Hwang, Yong Y Lee, Sandra J Gendler, Pinku Mukherjee.   

Abstract

MUC1 is overexpressed and aberrantly glycosylated in more than 60% of pancreatic ductal adenocarcinomas. The functional role of MUC1 in pancreatic cancer has yet to be fully elucidated due to a dearth of appropriate models. In this study, we have generated mouse models that spontaneously develop pancreatic ductal adenocarcinoma (KC), which are either Muc1-null (KCKO) or express human MUC1 (KCM). We show that KCKO mice have significantly slower tumor progression and rates of secondary metastasis, compared with both KC and KCM. Cell lines derived from KCKO tumors have significantly less tumorigenic capacity compared with cells from KCM tumors. Therefore, mice with KCKO tumors had a significant survival benefit compared with mice with KCM tumors. In vitro, KCKO cells have reduced proliferation and invasion and failed to respond to epidermal growth factor, platelet-derived growth factor, or matrix metalloproteinase 9. Further, significantly less KCKO cells entered the G(2)-M phase of the cell cycle compared with the KCM cells. Proteomics and Western blotting analysis revealed a complete loss of cdc-25c expression, phosphorylation of mitogen-activated protein kinase (MAPK), as well as a significant decrease in nestin and tubulin-α2 chain expression in KCKO cells. Treatment with a MEK1/2 inhibitor, U0126, abrogated the enhanced proliferation of the KCM cells but had minimal effect on KCKO cells, suggesting that MUC1 is necessary for MAPK activity and oncogenic signaling. This is the first study to utilize a Muc1-null PDA mouse to fully elucidate the oncogenic role of MUC1, both in vivo and in vitro. ©2011 AACR

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Year:  2011        PMID: 21558393      PMCID: PMC3129481          DOI: 10.1158/0008-5472.CAN-10-4439

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  23 in total

Review 1.  MUC1 as a target antigen for cancer immunotherapy.

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Review 2.  Ductal neoplasia of the pancreas: nosologic, clinicopathologic, and biologic aspects.

Authors:  Nazmi Volkan Adsay; Olca Basturk; Jeanette D Cheng; Aleodor A Andea
Journal:  Semin Radiat Oncol       Date:  2005-10       Impact factor: 5.934

3.  Pancreatic cancer: highlights from the 42nd annual meeting of the American Society of Clinical Oncology, 2006.

Authors:  Muhammad Wasif Saif
Journal:  JOP       Date:  2006-07-10

4.  Regulation of Cdc25C by ERK-MAP kinases during the G2/M transition.

Authors:  Ruoning Wang; Guangan He; Mayra Nelman-Gonzalez; Cheryl L Ashorn; Gary E Gallick; P Todd Stukenberg; Marc W Kirschner; Jian Kuang
Journal:  Cell       Date:  2007-03-23       Impact factor: 41.582

5.  Modulation of apoptosis and Bcl-2 expression by prostaglandin E2 in human colon cancer cells.

Authors:  H Sheng; J Shao; J D Morrow; R D Beauchamp; R N DuBois
Journal:  Cancer Res       Date:  1998-01-15       Impact factor: 12.701

6.  Mechanism of insulin-like growth factor I-mediated proliferation of adult neural progenitor cells: role of Akt.

Authors:  Haviryaji S G Kalluri; Raghu Vemuganti; Robert J Dempsey
Journal:  Eur J Neurosci       Date:  2007-02       Impact factor: 3.386

Review 7.  Mucins in cancer: function, prognosis and therapy.

Authors:  Donald W Kufe
Journal:  Nat Rev Cancer       Date:  2009-12       Impact factor: 60.716

8.  Progression of pancreatic adenocarcinoma is significantly impeded with a combination of vaccine and COX-2 inhibition.

Authors:  Pinku Mukherjee; Gargi D Basu; Teresa L Tinder; Durai B Subramani; Judy M Bradley; Million Arefayene; Todd Skaar; Giovanni De Petris
Journal:  J Immunol       Date:  2009-01-01       Impact factor: 5.422

9.  Delayed mammary tumor progression in Muc-1 null mice.

Authors:  A P Spicer; G J Rowse; T K Lidner; S J Gendler
Journal:  J Biol Chem       Date:  1995-12-15       Impact factor: 5.157

10.  MUC1 enhances tumor progression and contributes toward immunosuppression in a mouse model of spontaneous pancreatic adenocarcinoma.

Authors:  Teresa L Tinder; Durai B Subramani; Gargi D Basu; Judy M Bradley; Jorge Schettini; Arefayene Million; Todd Skaar; Pinku Mukherjee
Journal:  J Immunol       Date:  2008-09-01       Impact factor: 5.422

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  65 in total

Review 1.  Pancreatic ductal adenocarcinoma: a review of immunologic aspects.

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Journal:  J Investig Med       Date:  2012-04       Impact factor: 2.895

2.  Galectin-1 binds mucin in human trophoblast.

Authors:  Zanka Bojić-Trbojević; Milica Jovanović Krivokuća; Nikola Kolundžić; Miloš Petronijević; Svetlana Vrzić-Petronijević; Snežana Golubović; Ljiljana Vićovac
Journal:  Histochem Cell Biol       Date:  2014-05-23       Impact factor: 4.304

3.  Inflammatory monocyte mobilization decreases patient survival in pancreatic cancer: a role for targeting the CCL2/CCR2 axis.

Authors:  Dominic E Sanford; Brian A Belt; Roheena Z Panni; Allese Mayer; Anjali D Deshpande; Danielle Carpenter; Jonathan B Mitchem; Stacey M Plambeck-Suess; Lori A Worley; Brian D Goetz; Andrea Wang-Gillam; Timothy J Eberlein; David G Denardo; Simon Peter Goedegebuure; David C Linehan
Journal:  Clin Cancer Res       Date:  2013-05-07       Impact factor: 12.531

Review 4.  Genetically engineered mucin mouse models for inflammation and cancer.

Authors:  Suhasini Joshi; Sushil Kumar; Sangeeta Bafna; Satyanarayana Rachagani; Kay-Uwe Wagner; Maneesh Jain; Surinder K Batra
Journal:  Cancer Metastasis Rev       Date:  2015-12       Impact factor: 9.264

Review 5.  Novel roles for mucin 1 in the kidney.

Authors:  Mohammad M Al-Bataineh; Timothy A Sutton; Rebecca P Hughey
Journal:  Curr Opin Nephrol Hypertens       Date:  2017-09       Impact factor: 2.894

Review 6.  The molecular and cellular heterogeneity of pancreatic ductal adenocarcinoma.

Authors:  Nardin Samuel; Thomas J Hudson
Journal:  Nat Rev Gastroenterol Hepatol       Date:  2011-12-20       Impact factor: 46.802

7.  Targeting tumor-infiltrating macrophages decreases tumor-initiating cells, relieves immunosuppression, and improves chemotherapeutic responses.

Authors:  Jonathan B Mitchem; Donal J Brennan; Brett L Knolhoff; Brian A Belt; Yu Zhu; Dominic E Sanford; Larisa Belaygorod; Danielle Carpenter; Lynne Collins; David Piwnica-Worms; Stephen Hewitt; Girish Mallya Udupi; William M Gallagher; Craig Wegner; Brian L West; Andrea Wang-Gillam; Peter Goedegebuure; David C Linehan; David G DeNardo
Journal:  Cancer Res       Date:  2012-12-05       Impact factor: 12.701

8.  Immunobiology of human mucin 1 in a preclinical ovarian tumor model.

Authors:  R A Budiu; E Elishaev; J Brozick; M Lee; R P Edwards; P Kalinski; A M Vlad
Journal:  Oncogene       Date:  2012-09-10       Impact factor: 9.867

9.  The use of a novel MUC1 antibody to identify cancer stem cells and circulating MUC1 in mice and patients with pancreatic cancer.

Authors:  Jennifer M Curry; Kyle J Thompson; Shanti G Rao; Dahlia M Besmer; Andrea M Murphy; Valery Z Grdzelishvili; William A Ahrens; Iain H McKillop; David Sindram; David A Iannitti; John B Martinie; Pinku Mukherjee
Journal:  J Surg Oncol       Date:  2013-01-17       Impact factor: 3.454

10.  Oncolytic vesicular stomatitis virus in an immunocompetent model of MUC1-positive or MUC1-null pancreatic ductal adenocarcinoma.

Authors:  Eric Hastie; Dahlia M Besmer; Nirav R Shah; Andrea M Murphy; Megan Moerdyk-Schauwecker; Carlos Molestina; Lopamudra Das Roy; Jennifer M Curry; Pinku Mukherjee; Valery Z Grdzelishvili
Journal:  J Virol       Date:  2013-07-17       Impact factor: 5.103

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