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猪γ-干扰素在重组杆状病毒中的表达及其抗病毒活性的测定
引用本文:秦立廷,王喜军,胡森,李志中,陈伟业,葛金英,刘思当,步志高.猪γ-干扰素在重组杆状病毒中的表达及其抗病毒活性的测定[J].生物工程学报,2007,23(3):386-391.
作者姓名:秦立廷  王喜军  胡森  李志中  陈伟业  葛金英  刘思当  步志高
作者单位:1. 中国农业科学院哈尔滨兽医研究所兽医生物技术国家重点实验室,哈尔滨,150001;山东农业大学动物科技学院,泰安271018
2. 中国农业科学院哈尔滨兽医研究所兽医生物技术国家重点实验室,哈尔滨,150001
3. 中国农业科学院哈尔滨兽医研究所兽医生物技术国家重点实验室,哈尔滨,150001;内蒙古农业大学动物科学与医学学院,呼和浩特010018
4. 中国农业科学院哈尔滨兽医研究所兽医生物技术国家重点实验室,哈尔滨,150001;南京农业大学动物医学院,南京210095
5. 山东农业大学动物科技学院,泰安271018
基金项目:国家科技攻关计划;国家重点基础研究发展计划(973计划)
摘    要:研究利用Bac-To-Bac杆状病毒表达系统构建含有猪γ-干扰素(porcine interferon-γ,PoIFN-γ)完整开放阅读框的供体质粒pFastBacTM1-PoIFN-γ,转化DH10Bac感受态细胞获得重组穿梭质粒rBacmid-PoIFN-γ,转染sf9昆虫细胞救获表达PoIFN-γ的重组杆状病毒rBac-PoIFN-γ。以抗PoIFN-γ单克隆抗体为一抗进行Western blot、间接免疫荧光(IFA)及间接ELISA检测,结果表明PoIFN-γ在重组杆状病毒rBac-PoIFN-γ感染的昆虫细胞中获得正确表达。抗病毒活性试验显示,重组杆状病毒表达rPoIFN-γ能有效抑制水疱性口炎病毒(VSV)在猪肾细胞系(PK-15)的复制,rBac-PoIFN-γ感染昆虫细胞培养上清抗病毒活性为2×104抑制单位(IU)/mL,其抗病毒活性可以被鼠抗原核表达重组PoIFN-γ免疫血清有效阻断。结果表明rPoIFN-γ在重组杆状病毒rBac-PoIFN-γ在感染昆虫细胞获得有效表达,并具有高效抗病毒活性。

关 键 词:γ干扰素    重组杆状病毒  抗病毒活性
文章编号:1000-3061(2007)03-0386-06
修稿时间:2006-10-162007-01-12

Expression of Porcine Gamma-interferon in Recombinant Baculovirus and Determination of Its Antiviral Activity
QIN Li-Ting,WANG Xi-Jun,HU Sen,LI Zhi-Zhong,CHEN Wei-Ye,GE Jin-Ying,LIU Si-Dang,BU Zhi-Gao.Expression of Porcine Gamma-interferon in Recombinant Baculovirus and Determination of Its Antiviral Activity[J].Chinese Journal of Biotechnology,2007,23(3):386-391.
Authors:QIN Li-Ting  WANG Xi-Jun  HU Sen  LI Zhi-Zhong  CHEN Wei-Ye  GE Jin-Ying  LIU Si-Dang  BU Zhi-Gao
Institution:1.Key Laboratory of National Veterinary Biotechnology , Harbin Veterinary Research Institute, Chinese Academy of Agriculture Science, Harbin 150001, China;2. College of Animal Science and Technology Shandong Agriculture University, Taian 271018, China ;3.College of Animal Science and Animal Medicine, Inner Mongolia Agriculture University, Hohhot 010018, China ;4.College of Animal Medicine Nanjing Agriculture University, Nanjing 210095, China
Abstract:The full-length porcine interferon gamma(PoIFN-gamma) cDNA, including the secretion signal peptide coding region was recloned into honor plasmid pFastBac 1 of Bac-To-Bac Baculovirus Expression System. These recombinant plasmids, pFastBac -PoIFN-gamma, were transformed into DH(10Bac) host bacteria to get recombinant shuttle plasmids, rBacmid-PoIFN-gamma. Recombinant baculovirus, rBac-PoIFN-gamma, was generated for expressing PoIFN-gamma, by transfecting rBacmid-PoIFN-gamma with Cellfectin Reagent into sf9 insect cells. The expression of PoIFN-gamma in insect cells was confirmed by Western Blot, indirect immunofluorescence assay and indirect ELISA. The antiviral activity assay shows that PoIFN-gamma expressed by the rBac-PoIFN-gamma can efficiently inhibit the replication of the recombinant Vesicular Stomatitis Virus expressing green fluorescence protein in PK-15 cells. The antiviral activity of PoIFN-gamma can be specifically blocked by anti-PoIFN-gamma mouse serum. The antiviral titer of culture supernatant of insect cells infected by rBac-PoIFN-gamma is 2 x 10(4) IU/mL. The results demonstrat that the rBac-PoIFN-gamma can express rPoIFN-gamma efficiently and rPoIFN-gamma has high antiviral activity.
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