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2008 | 52 | 1 |

Tytuł artykułu

Two-dimensional electrophoretic analysis of polypeptides expressed by normal and ovine pulmonary adenocarcinoma affected lung tissues

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Frozen lung tissue sections from 2 healthy and 2 adenocarcinoma affected sheep were lysed in appropriate buffer. The two-dimensional (2D) electrophoresis of the protein lysates was performed. The resulting gels were visualised by silver and Coomassie Blue staining, then scanned and analysed using appropriate software. There was one spot present on the image obtained from the analysis of healthy tissue and no spot was found on cancer 2D gel image. The spot was excised and analysed using mass spectrometry. As a result, cytosolic NADP-isocitrate dehydrogenase was identified. In addition, several other protein spots of different intensity in neoplastic tissues, as compared with healthy ones, were found. The last finding reflects changes in protein expression in neoplastic and healthy tissues. These preliminary results can serve as the basis for more detailed investigations of the neoplastic tissue proteome, e.g.: isoelectric focusing in narrow pH range and analysis of correlation between tissue and serum protein profiles. The analysis of serum proteins from affected sheep can reveal markers of neoplastic process and help in preclinical diagnosis of ovine pulmonary adenocarcinoma.

Wydawca

-

Rocznik

Tom

52

Numer

1

Opis fizyczny

p.3-8,fig.,ref.

Twórcy

autor
  • National Veterinary Research Institute, 24-100 Pulawy, Poland
autor

Bibliografia

  • 1. Adam P.J., Boyd R.,Tyson K.L., Fletcher G.C., Stamps A., Hudson L., Poyser H.R., Redpath N., Griffiths M., Steers G., Harris A.L., Patel S., Berry J., Loader J.A., Townsend R.R., Daviet L., Legrain P., Parekh R., Terrett J.A.: Comprehensive proteomic analysis of breast cancer cell membranes reveals unique proteins with potential roles in clinical cancer. J Biol Chem 2003, 278, 6482- 6489.
  • 2. Bradford M.M.: A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Biochem 1976, 72, 248-254.
  • 3. Chen G., Gharib T.G., Wang H., Huang C.C., Kuick R., Thomas D.G., Shedden K.A., Misek D.E., Taylor J.M., Giordano T.J., Kardia S.L., Iannettoni M.D., Yee J., Hogg P.J., Orringer M.B., Hanash S.M., Beer D.G.: Protein profiles associated with survival in lung adenocarcinoma. Proc Natl Acad Sci 2003, 100, 13537- 13542.
  • 4. De Las Heras M., Ortin A., Salvatori D., Perez de Villareal M., Cousens C., Miguel Ferrer L., Miguel Cebrian L., Garcia de Jalon J.A., Gonzalez L., Michael Sharp J.: A PCR technique for the detection of Jaagsiekte sheep retrovirus in the blood suitable for the screening of ovine pulmonary adenocarcinoma in field conditions. Res Vet Sci 2005, 79, 259-264.
  • 5. Dwek M.V., Alaiya A.A.: Proteome analysis enables separate clustering of normal breast, benign breast and breast cancer tissues. Br J Cancer 2003, 89, 305-307.
  • 6. Gorg A., Obermaier C., Boguth G., Harder A., Scheibe B., Wildgruber R., Weiss W.: The current state of two- dimensional electrophoresis with immobilized pH gradients. Electrophoresis 2000, 21, 1037-1053.
  • 7. Granville C.A., Dennis P. A.: An overview of lung cancer genomics and proteomics. Am J Respir Cell Mol Biol 2005, 32, 169-176.
  • 8. Hall A.K.: Differential expression of thymosin genes in human tumors and in the developing human kidney. Int J Cancer 1991, 48, 672-677.
  • 9. Hanash S.M.: Biomedical applications of two- dimensional electrophoresis using immobilized pH gradients: current status. Electrophoresis 2000, 21, 1202- 1209.
  • 10. Hondermarck H.: Breast cancer: when proteomics challenges biological complexity. Mol Cell Proteomics 2003, 2, 281-291.
  • 11. Kikuchi T., Carbone David P.: Proteomics analysis in lung cancer: Challenges and opportunities. Respirology 2007, 12, 22-28.
  • 12. Kil I.S., Huh T.L., Lee Y.S., Lee Y.M., Park J.W.: Regulation of replicative senescence by NADP+ - dependent isocitrate dehydrogenase. Free Radic Biol Med 2006, 40, 110-119.
  • 13. Kolch W., Mischak H., Pitt A.R.: The molecular make-up of a tumour: proteomics in cancer research. Clin Sci 2005, 108, 369-383.
  • 14. Koh H.J., Lee S.M., Son B.G., Lee S.H., Ryoo Z.Y., Chang K.T., Park J.W., Park D.C., Song B.J., Veech R.L., Song H., Huh T.L.: Cytosolic NADP+-dependent isocitrate dehydrogenase plays a key role in lipid metabolism. J Biol Chem 2004, 279, 39968-39974.
  • 15. Liu W., Capuco A.V., Romagnolo D.F.: Expression of cytosolic NADP+-dependent isocitrate dehydrogenase in bovine mammary epithelium: Modulation by regulators of differentiation and metabolic effectors. Exp Biol Med 2006, 231, 599-610.
  • 16. Liu W., Degner S.C., Romagnolo D.F.: Trans-10, cis-12 conjugated linoleic acid inhibits prolactin-induced cytosolic NADP+ -dependent isocitrate dehydrogenase expression in bovine mammary epithelial cells. J Nutr 2006, 136, 2743-2747.
  • 17. Palmarini M., Fan H.: Retrovirus-induced ovine pulmonary adenocarcinoma, an animal model for lung cancer. J Natl Cancer Inst 2001, 93, 1603-1614.
  • 18. Sozo F., Wallace M.J., Zahra V.A., Filby C.E., Hooper S.B.; Gene expression profiling during increased fetal lung expansion identifies genes likely to regulate development of the distal airways. Physiol Genomics 2006, 24, 105-113.
  • 19. Srinivas P.R., Verma M., Zhao Y., Srivastava S.: Proteomics for cancer biomarker discovery. Clin Chem 2002, 48, 1160-1169.
  • 20. Wilkins M.R., Pasquali C., Appel R.D., Ou K., Golaz O., Sanchez J.C., Yan J.X., Gooley A.A., Hughes G., Humphrey-Smith I.: From proteins to proteomes - large- scale protein identification by 2-dimensional electrophoresis and amino acid analysis. Biotechnology 1996, 14, 61-65.
  • 21. Xu X., Zhao J., Xu Z., Peng B., Huang Q., Arnold E., Ding J.: Structures of human cytosolic NADP-dependent isocitrate dehydrogenase reveal a novel self-regulatory mechanism of activity. J Biol Chem 2004, 279, 33946- 33957.
  • 22. Yanagisawa K., Shyr Y., Xu B.J., Massion P.P., Larsen P.H., White B.C., Roberts J.R., Edgerton M., Gonzalez A., Nadaf S., Moore J.H., Caprioli R.M., Carbone D.P.: Proteomic patterns of tumour subsets in non-small-cell lung cancer. Lancet 2003, 362, 433-439.
  • 23. York D.F., Querat G.: A history of ovine pulmonary adenocarcinoma (jaagsiekte) and experiments leading to the deduction of the JSRV nucleotide sequence. Curr Top Microbiol Immunol 2003, 275, 1-23.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-a1395afb-b52d-42f2-8b2b-403f30b40914
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