Zheng Guanglai, Lu Xiaoran, Zhang Jingyuan, Chen Teng, Wang Dongfang, Yan Yan, Zhang Shoufeng, Hu Rongliang
Bing Du Xue Bao. 2016 Jul;32(4):472-7.
The purpose of this study was to express the matrix protein of rabies virus in baculovirus expression system and prepare its polyclonal antibody. Using the total RNA of RABV strain BD06 as a template, RT-PCR technique was utilized to amplify the sequence of M gene, which were then inserted into shuttle vector pFastbac I to construct the recombinant vector pFastbac I-M. After identification using the double restriction endonuclease cleavage method, the recombinant vector pFastbac I-M were transformed into the competent E. coli DH10 Bac to construct the recombinant expression vector Bacmid-M, which were transfected into Sf9 cells mediated by lipofectamine 2000 to obtain the recombinant baculovirus AcMNPV-M. The mice anti-His monoclonal antibody, rabbit anti-RV positive serum and canine anti-RV positive serum were used in Western Blot assays to identify the expression and reactogenicity of the recombinant. The recombinant M protein were purified under denaturing conditions using the nickel iron affinity chromatography column, then used to immunize the New Zealand White rabbit to prepare its polyclonal antibody. Western Blot assay and FAVN assay were used to validate the polyclonal antibody. Our results showed that the M protein of RABV were successfully expressed in baculovirus expression system,of which molecular weight was of about 25kD;the recombinant M protein has a good reactogenicity and immunogenicity; the rabbit polyclonal antibody prepared by purification of M protein could react with the M protein of RABV strain BD06,SRV 9,CVS-24,ERA,PV2061 and aG. Undoubtedly, the successfully preparation of both recombinant M protein and its polyclonal antibody support a material foundation for further study on the properties of M protein of RABV.
本研究旨在利用杆状病毒表达系统表达狂犬病病毒的基质蛋白并制备其多克隆抗体。以狂犬病病毒BD06株的总RNA为模板,采用RT-PCR技术扩增M基因序列,然后将其插入穿梭载体pFastbac I中构建重组载体pFastbac I-M。经双酶切鉴定后,将重组载体pFastbac I-M转化至感受态大肠杆菌DH10 Bac中构建重组表达载体Bacmid-M,再通过脂质体2000介导转染至Sf9细胞中获得重组杆状病毒AcMNPV-M。利用小鼠抗His单克隆抗体、兔抗狂犬病病毒阳性血清和犬抗狂犬病病毒阳性血清进行Western Blot分析,以鉴定重组蛋白的表达及反应原性。采用镍铁亲和层析柱在变性条件下纯化重组M蛋白,然后用其免疫新西兰白兔制备多克隆抗体。通过Western Blot分析和快速荧光灶抑制试验(FAVN)验证多克隆抗体。结果显示,狂犬病病毒M蛋白在杆状病毒表达系统中成功表达,其分子量约为25kD;重组M蛋白具有良好的反应原性和免疫原性;纯化的M蛋白制备的兔多克隆抗体可与狂犬病病毒BD06株、SRV 9、CVS-24、ERA、PV2061和aG株的M蛋白发生反应。毫无疑问,重组M蛋白及其多克隆抗体的成功制备为进一步研究狂犬病病毒M蛋白的特性奠定了物质基础。