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Cancer Prevention Research
Cancer Prevention Research
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Research Article

Comprehensive Proteome Analysis of an Apc Mouse Model Uncovers Proteins Associated with Intestinal Tumorigenesis

Kenneth E. Hung, Vitor Faca, Kenneth Song, David A. Sarracino, Larissa Georgeon Richard, Bryan Krastins, Sara Forrester, Andrew Porter, Alexandra Kunin, Umar Mahmood, Brian B. Haab, Samir M. Hanash and Raju Kucherlapati
Kenneth E. Hung
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Vitor Faca
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Kenneth Song
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David A. Sarracino
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Larissa Georgeon Richard
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Bryan Krastins
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Sara Forrester
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Andrew Porter
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Alexandra Kunin
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Umar Mahmood
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Brian B. Haab
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Samir M. Hanash
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Raju Kucherlapati
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DOI: 10.1158/1940-6207.CAPR-08-0153 Published March 2009
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Abstract

Tumor-derived proteins may occur in the circulation as a result of secretion, shedding from the cell surface, or cell turnover. We have applied an in-depth comprehensive proteomic strategy to plasma from intestinal tumor–bearing Apc mutant mice to identify proteins associated with tumor development. We used quantitative tandem mass spectrometry of fractionated mouse plasma to identify differentially expressed proteins in plasma from intestinal tumor–bearing Apc mutant mice relative to matched controls. Up-regulated proteins were assessed for the expression of corresponding genes in tumor tissue. A subset of proteins implicated in colorectal cancer were selected for further analysis at the tissue level using antibody microarrays, Western blotting, tumor immunohistochemistry, and novel fluorescent imaging. We identified 51 proteins that were elevated in plasma with concordant up-regulation at the RNA level in tumor tissue. The list included multiple proteins involved in colon cancer pathogenesis: cathepsin B and cathepsin D, cullin 1, Parkinson disease 7, muscle pyruvate kinase, and Ran. Of these, Parkinson disease 7, muscle pyruvate kinase, and Ran were also found to be up-regulated in human colon adenoma samples. We have identified proteins with direct relevance to colorectal carcinogenesis that are present both in plasma and in tumor tissue in intestinal tumor–bearing mice. Our results show that integrated analysis of the plasma proteome and tumor transcriptome of genetically engineered mouse models is a powerful approach for the identification of tumor-related plasma proteins.

Keywords
  • Proteomics
  • mass spectrometry
  • plasma proteome
  • colorectal cancer
  • mouse model
  • Received August 4, 2008.
  • Revision received November 20, 2008.
  • Accepted December 27, 2008.
  • ©2009 American Association for Cancer Research.
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Cancer Prevention Research: 2 (3)
March 2009
Volume 2, Issue 3
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Comprehensive Proteome Analysis of an Apc Mouse Model Uncovers Proteins Associated with Intestinal Tumorigenesis
Kenneth E. Hung, Vitor Faca, Kenneth Song, David A. Sarracino, Larissa Georgeon Richard, Bryan Krastins, Sara Forrester, Andrew Porter, Alexandra Kunin, Umar Mahmood, Brian B. Haab, Samir M. Hanash and Raju Kucherlapati
Cancer Prev Res March 1 2009 (2) (3) 224-233; DOI: 10.1158/1940-6207.CAPR-08-0153

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Comprehensive Proteome Analysis of an Apc Mouse Model Uncovers Proteins Associated with Intestinal Tumorigenesis
Kenneth E. Hung, Vitor Faca, Kenneth Song, David A. Sarracino, Larissa Georgeon Richard, Bryan Krastins, Sara Forrester, Andrew Porter, Alexandra Kunin, Umar Mahmood, Brian B. Haab, Samir M. Hanash and Raju Kucherlapati
Cancer Prev Res March 1 2009 (2) (3) 224-233; DOI: 10.1158/1940-6207.CAPR-08-0153
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Cancer Prevention Research
eISSN: 1940-6215
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