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A Comparative Study of Protein Profiles in Porcine Fetus Fibroblast Cells with Different Confluence States  

Han, Rong-Xun (Division of Animal Science & Resources, Research Center for Transgenic and Cloned Pigs, Chungnam National University)
Kim, Hong-Rye (Division of Animal Science & Resources, Research Center for Transgenic and Cloned Pigs, Chungnam National University)
Diao, Yunfei (Division of Animal Science & Resources, Research Center for Transgenic and Cloned Pigs, Chungnam National University)
Kim, Myung-Youn (Division of Animal Science & Resources, Research Center for Transgenic and Cloned Pigs, Chungnam National University)
Park, Chang-Sik (Division of Animal Science & Resources, Research Center for Transgenic and Cloned Pigs, Chungnam National University)
Jin, Dong-Il (Division of Animal Science & Resources, Research Center for Transgenic and Cloned Pigs, Chungnam National University)
Publication Information
Abstract
To examine the differential expression of proteins during the cycling (70~80% confluences) and G0/G1 (full confluences) phases in porcine fetal fibroblast cells, we used a global proteomics approach by 2-D gel electrophoresis (2-DE) and MALDI-TOF-MS. Cycling cell were harvested at approximately 70% to 80% confluent state while cells in G0/G1 phase were recovered after maintenance of a confluent state for 48 hr. Cellular proteins with isoelectric points ranging between 3.0~10.0, were analyzed by 2-DE with 2 replicates of each sample. A total of approximately 700 spots were detected by 2.D gels stained with Coomassie brilliant blue. On comparing the cell samples obtained from the cycling and G0/G1 phases, a total of 13 spots were identified as differentially expressed proteins, of which 8 spots were up-regulated in the cycling cell and 5 were up-regulated in the G0/G1 phase. Differentially expressed proteins included K3 keratin, similar to serine protease 23 precursor, protein disulfide-isomerase A3, microsomal protease ER-60, alpha-actinin-2, and heat-shock protein 90 beta. The identified proteins were grouped on the basis of their basic functions such as molecular binding, catabolic, cell growth, and transcription regulatory proteins. Our results show expression profiles of key proteins in porcine fetal fibroblast cells during different cell cycle status.
Keywords
Porcine fetal fibroblast cells; Cell cycle; 2-D gel electrophoresis; Mass spectrometry;
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1 Boquest AC, Day BN, Prather RS (1999): Flow cytometric cell cycle analysis of cultured porcine fetal fibroblast cells. Biol Reprod 60:1013-1019   DOI   ScienceOn
2 Kasinathan P, Knott JG, Wang Z, Jerry DJ, Robl JM (2001): Production of calves from G1 fibroblasts. Nature Biotechnol 19:1176-1178   DOI   ScienceOn
3 Loi P, Ptak G, Barboni B, Fulka, Jr J, Cappai P, Clinton M (2001): Genetic rescue of an endangered mammal by cross-species nuclear transfer using post-mortem somatic cells. Nat Biotechnol 19:962-964   DOI   ScienceOn
4 Roberts EC, Hammond K, Traish AM, Resing KA, Ahn NG (2006): Identification of G2/M targets for the MAP kinase pathway by functional proteomics. Proteomics 6:4541-4553   DOI   ScienceOn
5 Youssoufian H, McAfee M, Kwiatkowski DJ (1990): Cloning and chromosomal localization of the human cytoskeletal alpha-actinin gene reveals linkage to the beta-spectrin gene. Am J Hum Genet 47 (1):62-72
6 Moll R, Franke WW, Schiller DL, Geiger B, Krepler R (1982): The catalog of human cytokeratins: patterns of expression in normal epithelia, tumors and cultured cells. Cell 31:11-24   DOI   ScienceOn
7 Rideout WM 3rd, Eggan K, Jaenisch R (2001): Nuclear cloning and epigenetic reprogramming of the genome. Science 293:1093-1098   DOI   ScienceOn
8 Wilmut I, Schnieke AE, McWhir J, Kind AJ, Campbell KH (1997): Viable offspring derived from fetal and adult mammalian cells. Nature 385:810- 813   DOI   ScienceOn
9 Ma M, Guo X, Wang F, Zhao C, Liu Z, Shi Z, Wa ng Y, Zhang P, Zhang K, Wang N, Lin M, Zhou Z, Liu J, Li Q, Wang L, Huo R, Sha J, Zhou Q (2008): Protein expression profile of the mouse metaphase-II oocyte. J Proteome Res 7:4821-4830   DOI   ScienceOn
10 Schermer A, Galvin S, Sun TT (1986): Differentiation-related expression of a major 64K corneal keratin in vivo and in culture suggests limbal location of corneal epithelial stem cells. J Cell Biol 103:49-62   DOI   ScienceOn
11 Li A, Li H, Jin G, Xiu R (2003): A proteomic study on cell cycle progression of endothelium exposed to tumor conditioned medium and the possible role of cyclin D1/E. Clin Hemorheol Microcirc 29(3-4):383-390   ScienceOn
12 Boraldi F, Bini L, Liberatori S, Armini A, Pallini V, Tiozzo R, Ronchetti IP, Quaglino D (2003): Normal human dermal fibroblasts: proteomic analysis of cell layer and culture medium. Electrophoresis 24(7-8):1292-1310   ScienceOn
13 Gorg A, Obermaier C, Boguth G, Harder A, Scheibe B, Wildgruber R, Weiss W (2000): The current state of two-dimensional electrophoresis with immobilized pH gradients. Electrophoresis 21:1037- 1053   DOI   ScienceOn
14 Zhou Q, Jouneau A, Brochard V, Adenot P, Renard JP (2001): Developmental potential of mouse embryos reconstructed frommetaphase embryonic stem cell nuclei. Biol Reprod 65:412-419   ScienceOn
15 Bumke MA, Neri D, Elia G (2003): Modulation of gene expression by extracellular pH variations in human fibroblasts: a transcriptomic and proteomic study. Proteomics 3(5):675-688   DOI   ScienceOn
16 Cho SR, Ock SA, Yoo JG, Mohana kumar B, Choe SY, Rho GJ (2005): Effect of confluent, roscovitine treatment and serum starvation on the cell-cycle synchronization of bovine foetal fibroblasts. Reprod Domest Anim 40:171-176   DOI   ScienceOn
17 Yu YS, Sun XS, Jiang HN, Han Y, Zhao CB, Tan JH (2003): Studies of the cell cycle of in vitro cultured skin fibroblasts in goats: work in progress. Theriogenology 59:1277-1289   DOI   ScienceOn
18 Campbell KH (1999): Nuclear equivalence, nuclear transfer and the cell cycle. Cloning 1:3-15   DOI
19 Wilmut I, Beaujean N, de Sousa PA, Dinnyes A, King TJ, Paterson LA, Wells DN, Young LE (2002): Somatic cell nuclear transfer. Nature 419:583-586   DOI   ScienceOn
20 Mills M, Yang N, Weinberger R, Vander Woude DL, Beggs AH, Easteal S, North K (2001): Differential expression of the actin-binding proteins, alpha-actinin-2 and -3, in different species: implications for the evolution of functional redundancy. Hum Mol Genet 10:1335-1346   DOI   ScienceOn