Co-expression of human complement regulatory proteins DAF and MCP with an IRES-mediated dicistronic mammalian vector enhances their cell protective effects |
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Authors: | Li Xu Zhouzhou Zhao Jiqun Sheng Chengang Zhu Hui Liu Dahe Jiang Xin Mao Mingxiong Guo Wenxin Li |
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Affiliation: | (1) State Key Laboratory of Virology, College of Life Science, Wuhan University, Wuhan, 430072, P. R. China;(2) College of Life Sciences and Technology, Huazhong University of Science and Technology, Wuhan, 430074, P. R. China |
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Abstract: | C3 convertase regulatory proteins, decay accelerating factor (DAF, CD55) and membrane cofactor protein (MCP, CD46), have complementary function and transfected into non-human cells might confer protection against human complement. This may be an effective strategy to alleviate C-mediated cell damage by combining the two activities. In this study, we constructed a dicistronic mammalian expression vector pcDNA3-MCPIRESDAF using the internal ribosomal entry sites (IRES) of the encephalomyocarditis virus (EMCV), and stable cell lines were obtained by G418 screening. Integration of extraneous genes was identified by PCR. RT-PCR and Western blotting analysis demonstrated that the EMCV IRES allowed for efficient co-expression of hMCP and hDAF in NIH3T3 cells stably transfected with pcDNA3-MCPIRESDAF. Human complement-mediated cytolysis assays showed that co-expressed DAF and MCP proteins could provide more significant protection against complement-mediated cytolysis than either hMCP or hDAF alone. These results suggest that DAF and MCP synergize the actions of each other, and the IRES-mediated polycistronic vector should improve the efficiency and effectiveness of multi-gene delivery. The pcDNA3-MCPIRESDAF vector has potential therapeutic value for effectively controlling complement activation, thereby increasing the possibility of inter-species transplantation. Published in Russian in Biokhimiya, 2008, Vol. 73, No.9, pp. 1274–1280. |
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Keywords: | complement regulatory proteins internal ribosome entry site (IRES) dicistronic expression vector co-expression hyperacute rejection |
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