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Efficacy of Gene Transfer and Expression of Novel Recombinant Baculovirus Vector

새로운 재조합 베큘로바이러스 벡터의 유전자 전달과 유전자 발현의 효과

  • Kweon, Tae-Dong (Department of Anesthesiology and Pain Medicine, Yonsei University College of Medicine) ;
  • Hong, Seong-Karp (Division of Bio and Health Sciences, Mokwon University)
  • Received : 2014.07.18
  • Accepted : 2014.08.05
  • Published : 2014.08.31

Abstract

Novel baculovirus vector systems recombined with coding genes of polyhedron promoter, vesicular stomatitis virus G (VSVG), polyA, cytomegalovirus (CMV) promoter, enhanced green fluorescent protein (EGFP), and protein transduction domain (PTD) were constructed. These recombinant baculovirus vector systems were applied into human foreskin fibroblast cells and compared the effects of gene transfer and gene expression of these recombinant baculovirus vector systems with control vector system. From this study, it showed that these novel recombinant baculovirus vector systems were superior efficacy to control vector system in view of gene transfer and gene expression.

폴리히드론 프로모터, 수포성구내염 바이러스G, 폴리A, 사이토메가바이러스 프로모터, 강화녹색형광단백질, 단백질전달부위 유전자 등을 포함한 새로운 베큘로바이러스 시스템이 제조되었다. 본 재조합벡터 시스템은 인간 섬유아세포에 적용하여 시험하였고 재조합된 유전자의 전달과 유전자 발현을 대조 벡터시스템과 비교하였다. 본 연구로부터 새롭게 제작된 본 베큘로바이러스 시스템이 유전자의 전이와 유전자 발현 면에서 대조 벡터시스템 보다 고효율을 나타내었다.

Keywords

References

  1. G. F. Rohrmann, "Baculovirus Molecular Biology (2nd ed.),". Bethesda: National Center for Biotechnology Information pp.1, 2011.
  2. C. Hofmann, V. Sandig, G. Jennings, M. Rudolph, P. Schlag, M. Strauss, "Efficient Gene Transfer into Human Hepatocytes by Baculovirus Vectors,". PNAS vol. 92, pp.10099-10103, 1995. https://doi.org/10.1073/pnas.92.22.10099
  3. A. Lackner, K. Genta, H. Koppensteiner, I. Herbacek, K. Holzmann, S. Spiegl-Kreinecker, W. Berger, M. Grusch, "A bicistronic baculovirus vector for transient and stable protein expression in mammalian cells,". Analytical Biochemistry vol. 380, pp.146-148, 2008. https://doi.org/10.1016/j.ab.2008.05.020
  4. F. Altmann, E. Staudacher, I. B. Wilson, L. Marz, "Insect cells as hosts for the expression of recombinant glycoproteins," Glycoconjugate J. vol. 16, pp. 109-123, 1999. https://doi.org/10.1023/A:1026488408951
  5. T. Kost, and J. P. Condreay, "Recombinant baculoviruses as expression vectors for insect and mammalian cells," Current Opinion in Biotechnology vol. 10, pp.428-433, 1999. https://doi.org/10.1016/S0958-1669(99)00005-1
  6. D. J. Betting, X. Y. Mu, K. Kafi, D. McDonnel, F. Rosas,, D. P. Gold, J. M. Timmerman, "Enhanced immune stimulation by a therapeutic lymphoma tumor antigen vaccine produced in insect cells involves mannose receptor targeting to antigen presenting cells," Vaccine vol. 27, pp.250-259, 2009. https://doi.org/10.1016/j.vaccine.2008.10.055
  7. The Bac-to-Bac Baculovirus Expression System,"Guide to baculovirus expression vector systems (BEVS) and insect cell culture techniques," Invitrogen Life Technolgies pp. 1, 2012.
  8. J. S. Yoon, Y. T. Jung, S. K. Hong, S. H. Kim, M. C. Shin, D. G. Lee, W. S. Min, S. Y. Paik, "Charateristics of HIV-Tat protein transduction domain," J. Microbiol. vol. 42, pp. 328-335, 2004.
  9. S. R. Schwarze, and S. F. Dowdy,"In vivo protein transduction: Intracellular delivery of biologically active proteins, compounds and DNA," Trends. Pharmacol. Sci. vol. 21, pp. 45-48, 2000. https://doi.org/10.1016/S0165-6147(99)01429-7
  10. E. Vives, P. Brodin, and B. Lebleu. "A truncated HIV-1 Tat protein basic domain rapidly translocates through the plasma membrane and accumulates in the cell nucleus," J. Biol. Chem. vol. 272, pp. 16010-16017, 1997. https://doi.org/10.1074/jbc.272.25.16010
  11. H. Nagahara, A. M. Vocero-Akbani, E. L. Snyder, A. Ho, D. G. Latham, N. A. Lissy, M. Becker-Hapak, S. A. Ezhevsky, and S. F. Dowdy, "Transduction of full-length TAT fusion proteins into mammalian cells: TAT-p27Kip1 induces cell migration," Nature Medicine 4, 1449-1452, 1998. https://doi.org/10.1038/4042