Literature DB >> 17496331

Quantitative proteomics analysis reveals that proteins differentially expressed in chronic pancreatitis are also frequently involved in pancreatic cancer.

Ru Chen1, Teresa A Brentnall, Sheng Pan, Kelly Cooke, Kara White Moyes, Zhaoli Lane, David A Crispin, David R Goodlett, Ruedi Aebersold, Mary P Bronner.   

Abstract

The effective treatment of pancreatic cancer relies on the diagnosis of the disease at an early stage, a difficult challenge. One major obstacle in the development of diagnostic biomarkers of early pancreatic cancer has been the dual expression of potential biomarkers in both chronic pancreatitis and cancer. To better understand the limitations of potential protein biomarkers, we used ICAT technology and tandem mass spectrometry-based proteomics to systematically study protein expression in chronic pancreatitis. Among the 116 differentially expressed proteins identified in chronic pancreatitis, most biological processes were responses to wounding and inflammation, a finding consistent with the underlining inflammation and tissue repair associated with chronic pancreatitis. Furthermore 40% of the differentially expressed proteins identified in chronic pancreatitis have been implicated previously in pancreatic cancer, suggesting some commonality in protein expression between these two diseases. Biological network analysis further identified c-MYC as a common prominent regulatory protein in pancreatic cancer and chronic pancreatitis. Lastly five proteins were selected for validation by Western blot and immunohistochemistry. Annexin A2 and insulin-like growth factor-binding protein 2 were overexpressed in cancer but not in chronic pancreatitis, making them promising biomarker candidates for pancreatic cancer. In addition, our study validated that cathepsin D, integrin beta1, and plasminogen were overexpressed in both pancreatic cancer and chronic pancreatitis. The positive involvement of these proteins in chronic pancreatitis and pancreatic cancer will potentially lower the specificity of these proteins as biomarker candidates for pancreatic cancer. Altogether our study provides some insights into the molecular events in chronic pancreatitis that may lead to diverse strategies for diagnosis and treatment of these diseases.

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Year:  2007        PMID: 17496331     DOI: 10.1074/mcp.M700072-MCP200

Source DB:  PubMed          Journal:  Mol Cell Proteomics        ISSN: 1535-9476            Impact factor:   5.911


  59 in total

1.  The proteome of postsurgical pancreatic juice.

Authors:  Giovanni Marchegiani; Joao A Paulo; Klaus Sahora; Carlos Fernández-Del Castillo
Journal:  Pancreas       Date:  2015-05       Impact factor: 3.327

2.  Multiplex targeted proteomic assay for biomarker detection in plasma: a pancreatic cancer biomarker case study.

Authors:  Sheng Pan; Ru Chen; Randall E Brand; Sarah Hawley; Yasuko Tamura; Philip R Gafken; Brian P Milless; David R Goodlett; John Rush; Teresa A Brentnall
Journal:  J Proteome Res       Date:  2012-02-08       Impact factor: 4.466

3.  Bioorthogonal labeling cell-surface proteins expressed in pancreatic cancer cells to identify potential diagnostic/therapeutic biomarkers.

Authors:  Randy S Haun; Charles M Quick; Eric R Siegel; Ilangovan Raju; Samuel G Mackintosh; Alan J Tackett
Journal:  Cancer Biol Ther       Date:  2015-07-15       Impact factor: 4.742

Review 4.  Advances in biomarker research for pancreatic cancer.

Authors:  Kruttika Bhat; Fengfei Wang; Qingyong Ma; Qinyu Li; Sanku Mallik; Tze-Chen Hsieh; Erxi Wu
Journal:  Curr Pharm Des       Date:  2012       Impact factor: 3.116

Review 5.  β-Cell dysfunction in chronic pancreatitis.

Authors:  M Sasikala; R Talukdar; P Pavan kumar; G Radhika; G V Rao; R Pradeep; C Subramanyam; D Nageshwar Reddy
Journal:  Dig Dis Sci       Date:  2012-03-02       Impact factor: 3.199

6.  Discrimination between adenocarcinoma and normal pancreatic ductal fluid by proteomic and glycomic analysis.

Authors:  Mindy Porterfield; Peng Zhao; Haiyong Han; John Cunningham; Kazuhiro Aoki; Daniel D Von Hoff; Michael J Demeure; J Michael Pierce; Michael Tiemeyer; Lance Wells
Journal:  J Proteome Res       Date:  2013-12-12       Impact factor: 4.466

7.  Quantitative organellar proteomics analysis of rough endoplasmic reticulum from normal and acute pancreatitis rat pancreas.

Authors:  Xuequn Chen; Maria Dolors Sans; John R Strahler; Alla Karnovsky; Stephen A Ernst; George Michailidis; Philip C Andrews; John A Williams
Journal:  J Proteome Res       Date:  2010-02-05       Impact factor: 4.466

8.  Immunoscreening of the extracellular proteome of colorectal cancer cells.

Authors:  Susanne Klein-Scory; Salwa Kübler; Hanna Diehl; Christina Eilert-Micus; Anke Reinacher-Schick; Kai Stühler; Bettina Warscheid; Helmut E Meyer; Wolff Schmiegel; Irmgard Schwarte-Waldhoff
Journal:  BMC Cancer       Date:  2010-02-25       Impact factor: 4.430

9.  Analysis of endoscopic pancreatic function test (ePFT)-collected pancreatic fluid proteins precipitated via ultracentrifugation.

Authors:  Joao A Paulo; Vivek Kadiyala; Aleksandr Gaun; John F K Sauld; Ali Ghoulidi; Peter A Banks; Hanno Steen; Darwin L Conwell
Journal:  JOP       Date:  2013-03-10

Review 10.  A compendium of potential biomarkers of pancreatic cancer.

Authors:  H C Harsha; Kumaran Kandasamy; Prathibha Ranganathan; Sandhya Rani; Subhashri Ramabadran; Sashikanth Gollapudi; Lavanya Balakrishnan; Sutopa B Dwivedi; Deepthi Telikicherla; Lakshmi Dhevi N Selvan; Renu Goel; Suresh Mathivanan; Arivusudar Marimuthu; Manoj Kashyap; Robert F Vizza; Robert J Mayer; James A Decaprio; Sudhir Srivastava; Samir M Hanash; Ralph H Hruban; Akhilesh Pandey
Journal:  PLoS Med       Date:  2009-04-07       Impact factor: 11.069

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