Expression and localization of the spore wall protein SWP26 of <i>Nosema bombycis </i>in the silkworm BmN cell line
- 1 Jiangsu University of Science and Technology, Zhenjiang, China
- 2 Jiangsu University of Science and Technology, Zhenjiang, China Sericultural Research Institute, Chinese Academy of Agricultural Sciences, Zhenjiang, China
- 3 Jiangsu University of Science and Technology, Zhenjiang, China
- 4 Jiangsu University of Science and Technology, Zhenjiang, China
- 5 Jiangsu University of Science and Technology, Zhenjiang, China
- 6 Jiangsu University of Science and Technology, Zhenjiang, China Sericultural Research Institute, Chinese Academy of Agricultural Sciences, Zhenjiang, China
- 7 Jiangsu University of Science and Technology, Zhenjiang, China Sericultural Research Institute, Chinese Academy of Agricultural Sciences, Zhenjiang, China
- 8 Jiangsu University of Science and Technology, Zhenjiang, China Sericultural Research Institute, Chinese Academy of Agricultural Sciences, Zhenjiang, China
Abstract
The microsporidian spore wall proteins, as the main components of the spore wall, play a key role in spore adherence to host cells and in recognition of the parasite by the host during the invasion process. In this study, we used the Bac-to-Bac baculovirus expression system to express the spore wall protein SWP26, fused to enhanced green fluorescent protein (EGFP), in the silkworm BmN cell line. The SWP 26 and EGFP genes were inserted into the baculovirus transfer vector pFastBac1. The transfer vector pFastBac1-swp26-egfp was transformed into the bacterium Escherichia coli DHl0Bac/ Bombyx mori nucleopolyhedrovirus (BmNPV) to construct the recombinant vBm swp26-egfp bacmid. The vBm swp26-egfp bacmid DNA was then used to transfect BmN cells to obtain the recombinant baculovirus. Western blotting analysis of total protein lysates in BmN cells infected by the recombinant virus showed a protein band of approximately 51 kDa, which corresponded to the deduced molecular weight of the swp26-egfp fusion protein. In addition, a fluorescence signal was observed in the cytoplasm and nucleo plasm of transfected cells, indicating that SWP26 had been successfully expressed in BmN cells. The SWP26 expression system established in this study lays the foundation for additional molecular and cellular studies, especially those focused on the interaction between the SWP26 protein of Nosema bombycis and the proteins of the silkworm, Bombyx mori .
- Wittner, M. and Weiss, L.M. (1999) The microsporidia and microsporidiosis. ASM Press, Washington DC.
- Becnel, J.J. and Andreadis, T.G. (1999) Microsporidia in insects. In: Wittner, M. and Weiss, L.M. Eds., The Mi crosporidia and Microsporidiosis, ASM Press, Washing ton DC, 447-501.
- Tanada, Y. and Kaya, H.K. (1993) Insect pathology. Aca demic Press, New York.
- Vávra, J. and Larsson, J.I.R. (1999) Structure of the mi crosporidia. In: Wittner, M. and Weiss, L.M., Eds., The Microsporidia and Microsporidiosis, ASM Press, Wash ington, DC, 7-84.
- Southern, T.R., Jolly, C.E., Lester, M.E. and Hayman, J.R. (2007) EnP1, a microsporidian spore wall protein that enables spores to adhere to and infect host cells in vitro. Eukaryotic Cell, 6, 1354-1362. doi:10.1128/EC.00113-07
- Brosson, D., Kuhn, L., Delbac, F., Garin, J., Vivares, C.P. and Texier, C. (2006) Proteomic analysis of the eu karyotic parasite Encephalitozoon cuniculi (microspo ridia): A reference map for proteins expressed in late sporogonial stages. Proteomics, 6, 3625-3635. doi:10.1002/pmic.200500796
- Bohne, W., Ferguson, D.J., Kohler, K. and Gross, U. (2000) Developmental expression of a tandemly repeated, glycine and serine-rich spore wall protein in the micro sporidian pathogen Encephalitozoon cuniculi. Infection and Immunity, 68, 2268-2275. doi:10.1128/IAI.68.4.2268-2275.2000
- Hayman, J.R., Hayes, S.F., Amon, J. and Nash, T.E. (2001) Developmental expression of two spore wall proteins during maturation of the microsporidian Encephalitozoon intestinalis. Infection and Immunity, 69, 7057-7066. doi:10.1128/IAI.69.11.7057-7066.2001
- Brosson, D., Kuhn, L., Prensier, G., Vivares, C.P. and Texier, C. (2005) The putative chitin deacetylase of Encephalitozoon cuniculi: A surface protein implicated in microsporidian spore-wall formation. FEMS Microbiol ogy Letters, 247, 81-90. doi:10.1016/j.femsle.2005.04.031
- Peuvel-Fanget, I., Polonais, V., Brosson, D., Texier, C., Kuhn, L., Peyret, P., Vivares, C. and Delbac, F. (2006) EnP1 and EnP2, two proteins associated with the En cephalitozoon cuniculi endospore, the chitin-rich inner layer of the microsporidian spore wall. International Jour nal for Parasitology, 36, 309-318. doi:10.1016/j.ijpara.2005.10.005
- Xu, Y., Takvorian, P., Cali, A., Wang, F., Zhang, H., Orr, G. and Weiss, L.M. (2006) Identification of a new spore wall protein from Encephalitozoon cuniculi. Infection and Immunity, 74, 239-247. doi:10.1128/IAI.74.1.239-247.2006