Journal of Animal and Veterinary Advances

Year: 2012
Volume: 11
Issue: 16
Page No. 2890 - 2897

Expression of Human Granulocyte-Macrophage Colony-Stimulating Factor in Stably-Transformed BmN and Sf-9 Cells and Silkworms by a Non-Transposon Vector

Authors : Hao Kun Zhang, Guang Li Cao, Yan Mei Li, Ren Yu Xue and Cheng Liang Gong

References

Aua, L., T. Liu, B, H. Shena, K. Chooa and S. Wang, 1996. Secretory production of bioactive recombinant human granulocyte-macrophage colony-stimulating factor by a baculovirus expression system. J. Nal. Bio. Technol., 51: 107-113.
PubMed  |  Direct Link  |  

Burgess, A., C. Begley, G. Johnson, A. Lopez and W. Mson et al., 1987. Purification and properties of bacterially synthesized human gr anulocyte-macrophage colony-stimulating factor. Blood, 69: 43-51.
Direct Link  |  

Cao, G., R. Xue and W. Shen, 2006. Research on hGM-CSF transgentic silkworm with piggybac transposon. Sericulture Sci., 32: 324-327.

Cui, L., R. Xue, Y. Lu, G. Cao and C. Gong, 2011. Expression of hIL-28A in transgenic silkworm mediated by non-transposon vector. Prog. Biochem. Bio. Phys., 38: 724-729.
CrossRef  |  Direct Link  |  

Daubnerova, I., L. Roller and D. Zitoan, 2009. Transgenesis approaches for functional analysis of peptidergic cells in the silk worm Bombyx mori. Gen. Comp. Endocrinol., 162: 36-42.
CrossRef  |  Direct Link  |  

Farrell, P., M. Lu, J. Prevost, C. Brown, L. Behie and K. Iatrou, 1998. High-level expression of secreted glycoproteins in transformed lepidopteran insect cells using a novel expression vector. Bio. Technol. Bio. Eng., 60: 656-663.
PubMed  |  Direct Link  |  

Fraser, M., T. Clszczon, T. Elick and C. Bauser, 1996. Precise excisio n of TTAA-specific lepidopteran transposons piggy Bac (IFP2) and tagalong (TFP3) from the baculovirus genome in cell lines from two species of Lepidoptera. Insect Mol. Biol., 5: 141-151.
PubMed  |  Direct Link  |  

Gong, C., R. Xue, G. Cao, X. Shi and W. Shen, 2005. hGM-CSF expression by using recomb in ant bmnpv with inactivated chitinase and cathepsin genes. Prog. Biochem. Biophys., 32: 947-952.

Grossmann, M., R. Wong, N. The, J. Tropea, J. East-Palmer, B. Weintraub and M. Szkudlinski, 1997. Expression of biologically active human thyrotropin (hTSH) in a baculovirus system, Effec t of insect cell glycosylation on hTSH activity in vitro and in vivo. Endocrinology, 138: 92-100.
PubMed  |  Direct Link  |  

Handler, A., S. Mc Combs and M. Fraser, 1998. The lepidopteran transposon vector, piggyBac,me diates germ-line transformation in the Mediterranean fruit fly. Proc. Nat. Acad. Sci. USA, 95: 7520-7525.
Direct Link  |  

Harrison, R. and D. Jarvis, 2007. Transforming lepidopteran insect cells for improved protein processing. Methods Mol. Biol., 388: 341-356.
CrossRef  |  Direct Link  |  

Henderson, J., A. Atkinson, C. Lazarus, C. Hawes, R. Napier, H. Macdonald and L. King, 1995. Stable expression of maize auxin binding protein in insect cell lines. Fed. Eur. Biochem. Soc. Lett., 371: 293-296.
Direct Link  |  

Hino, R., M. Tomita and K. Yoshizato, 2006. The generation of germline transgenic silk worms for the production of biologic ally active recombinant fusion proteins of fibroin and human basic fibroblast growth factor. Bio. Mater., 27: 5715-5724.
PubMed  |  Direct Link  |  

Jarvis, D. and E. Finn, 1996. Modifying the insect cell N-glycosylation pathway with immediate early baculovirus expression vectors. Nat. Bio. Technol., 14: 1266-1292.
PubMed  |  Direct Link  |  

Jarvis, D., J. Flemina, G. Kovacs, M. Summers and L. Guarino, 1990. Use of early baculovirus promoters for continuous expression and efficient processing of foreign gene products in stably transformed lepidopteran insect cells. Biotechnology, 6: 950-955.
CrossRef  |  Direct Link  |  

Joyce, K., A. Atkinson, I. Bermudez, D. Beadle and L. Kino, 1993. Synthesis of functional GABA-A receptors in stable insect cell lines. Fed. Eur. Biochem. Soc. Lett., 335: 61-64.
PubMed  |  Direct Link  |  

Kodaira, K., R. Takahashi, M. Hirabayashi, T. Suzuki and M. Ueda, 1997. Recombinant human GM-CSF in the milk of transgenic rats. Theriogenology, 47: 216-216.
CrossRef  |  Direct Link  |  

Kurihara, H., H. Sezutsu, T. Tamura and K. Yamada, 2007. Production of an active feline interferon in the cocoon of transgenic silk worms using the fibroin H-cha in expression system. Biochem. Biophys. Res. Commun., 355: 976-980.

Lu , Y., X. Zheng, R. Xue, G. Cao, W. Shen and C. Gong, 2011. Antip roliferative activity of recombinant human interferon-e2 expressed in stably transformed BmN cells. Afr. J. Biotechnol., 10: 7260-7266.

Mandrioli, M. and E. Wimmer, 2003. Stable transformation of a Mamestra brassicae (lepidoptera) cell line with the lepidopteran-derived transposon piggyback. Insect Biochem. Mol. Biol., 33: 1-5.

Miyajima, A., K. Otsu, J. Schreurs, M.W. Bond, J.S. Abrams and K. Arai, 1986. Expression of murine and human granulocyte-macrophage colony-stimula ting factors in S. cerevisiase, mutagenesis of the potential glycosylation sites. EMBO J., 5: 1193-1197.
Direct Link  |  

Ogawa, S., M. Tomita, K. Shimizu and K. Yoshizato, 2007. Generation of transgenic silk worm that secretes recombinant proteins in the seric in layer of cocoon, Production of recombinant human serum albumin. J. Biotechnol., 128: 531-544.
Direct Link  |  

Ryoo, Z., M. Kim, K. Kim, Y. Bahk and J. Lee et al., 2001. Expression of recombinant human granulocyte macrophage-colony stimulating factor (Hgm-CSF) in mouseurine. Trans. Res., 10: 193-200.
PubMed  |  Direct Link  |  

Shi, X., J. Qin, J. Zhu and D. Zhu, 1996. Expression of biologic ally active human granulocyte-macrophage colony-stimulating factor in the silkworm (Bombyx mori). Applied Biochem. Biotechnol., 24: 245-249.
PubMed  |  Direct Link  |  

Shi, X., J. Qin, J. Zhu and D. Zhu, 1996. Expression of biologically active human granulocyte-macrophage colony-stimulating factor in the silkworm (Bombyx mori). Applied Biochem. Biotechnol., 24: 245-249.
PubMed  |  Direct Link  |  

Shi, X., J. Qin, J. Zhu and D. Zhu, 1996. Expression of biologically active human granulocyte-macrophage colony-stimulating factor in the silkworm (Bombyx mori). Applied Biochem. Biotechnol., 24: 245-249.
PubMed  |  Direct Link  |  

Takahiro, A., M. Tomita, K. Shimizu, S. Ogawa and K. Yoshizato, 2006. Generation of hybrid transgenic silkworms that express Bombyx mori prolyl-hydroxyla sea-subunits and human collagens in posterior silk glands, Production of cocoons that contained collagens with hydroxylated praline residues. J. Biotechnol., 126: 205-219.

Tamura, T., C. Thibert, C. Royer, T. Kanda and A. Eappen et al., 1997. Bovine alpha s1-casein gene sequences direct high level expression of human granulocyte-macrophage colony-stimulating factor in the milk of transgenic mice. Trans. Res., 6: 75-84.
PubMed  |  Direct Link  |  

Tatematsu, K., I. Kobayashi, K. Uchino, H. Sezutsu, T. Iizuka, N. Yonemura and T. Tamura, 2010. Construction of a binary transgenic gene expression system for recombinant protein production in the middle silk gland of the silkworm Bombyx mori. Transgenic Res., 19: 473-487.
CrossRef  |  PubMed  |  Direct Link  |  

Tomita, M., H. Munetsuna, T. Sato, T. Adachi and R. Hino et al., 2003. Transgenic silkworms produce recombinant human type III procollagen in cocoons. Nat. Biotechnol., 21: 52-56.
CrossRef  |  PubMed  |  Direct Link  |  

Uchino, K., M. Imamura, K. Shimizu, T. Kanda and T. Tamura, 2007. Germ line transformation of the silkworm, Bombyx mori, using the transposable element Minos. Mol. Genet. Genomics, 277: 213-220.
CrossRef  |  PubMed  |  

Wickham, T., T. Davis, R. Granados, M. Shuler and H. Wood, 1992. Screening of insect cell lines for the production of recombinant proteins and infectious virus in the baculovirus expression systems. Biotechnol. Bioeng., 8: 391-396.
CrossRef  |  Direct Link  |  

Wong, G., J. Witek, P. Temple, K. Wilkens and A. Leary et al., 1985. Human GM-CSF, Molecular cloning of the complementary DNA and purification of the natural and recombinant protein. Science, 228: 810-815.
CrossRef  |  Direct Link  |  

Wu, X. and C. Cao, 2004. Targeting of human a FGF gene into silk worm, Bombyx mori L. through homologous recombination. J. Zhejiang Univ. Sci., 5: 644-650.
Direct Link  |  

Xue, R., H. Chen, L. Cui, G. Cao, W. Zhou, X. Zheng and C. Gong, 2011. Expression of hGM-CSF in silk glands of transgenic silkworms using gene targeting vector. Transgen. Res., 21: 101-111.
PubMed  |  Direct Link  |  

Xue, R., X. Li, Y. Zhao, X. Pan, X. Zhu, G. Cao and C. Gong, 2009. Elementary research into the transformation BmN cells mediated by the piggyBac transposon vector. J. Biotechnol., 144: 272-278.
PubMed  |  Direct Link  |  

Yamao, M., N. Katayama, H. Nakazawa, M. Yamakawa and Y. Hayashi et al., 2009. Gene targeting in the silk worm by use of a baculovirus. Gen. Dev., 13: 511-516.

Zhang, J., N. Kalogerakis, L. Behie and K. Iatrou, 1993. A two-stage bioreactor system for the production of recombinant proteins using a genetically engineered baculovirus/insect cell system. Biotechnol. Bioeng., 42: 357-366.
Direct Link  |  

Zhao, Y., X. Li and G. Cao, 2009. Expression of hIGF-1 in the silk glands of transgenic silk worms and in transformed silkworm cells. Sci. China Ser. C, Life Sci., 39: 677-684.

Zhu, Y., Y. Li and X. Zhen, 2004. Modern Molecular Biology. 2nd Edn., High Education Press, Beijing, Pages: 288.

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