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H9N2亚型AIVHA基因的克隆及其在昆虫细胞中的表达 被引量:2

Cloning of HA Gene of H9N2 Avian Influenza Virus (AIV) and its Expression in Insect Cells
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摘要 【研究目的】利用杆状病毒表达系统表达AIVH9N2亚型HA基因以获得可以利用的HA蛋白;【方法】应用DNAStar软件,参照Genbank中注册的AIVH9N2亚型HA基因序列,设计了一对引物,用RT-PCR方法成功地扩增出带双酶切位点的H9亚型AIV的HA基因,通过BamHⅠ和XhoⅠ双酶切位点将H9HA基因插入转移质粒载体pFastbacHTa中,获得重组转移载体pFastbacHTa-H9HA并将其转化DH10Bac细胞,与Bacmid发生位点特异性转座作用,得到重组穿梭载体Bacmid-H9HA,再将其转染昆虫细胞HighFive,进行PCR鉴定、SDS-PAGE和WesternBlot检测;【结果】HA基因正确地插入到病毒基因组的多角体蛋白基因启动子下游,HA基因在HighFive细胞中得到了表达,H9HA大小约为67KD,而且表达的产物具有特异免疫学反应性;【结论】HA基因在昆虫细胞获得表达,为进一步生产检测H9N2亚型流感病毒的检测试剂或者构建亚单位疫苗奠定了基础。 [OBJECTIVE]HA gene of H9N2 AIV was expressed by using Baculovims expression system. [METHOD]A pair of primers was designed by employing DNA Star software and consulting the HA nucleotide sequences of H9N2 subtype AIV. Then the HA gene with flanking restriction sites was successfully PCR-amplified. The Hg-HA gene was excised with BamH I and Xho I , and inserted into the transfer vehi- cle pFastbacHTa to obtain the recombinant transfer vectors pFastbacHTa-HgHA, which was used to transform DH10 Bac-host ceils, producing specific transposition with Bacmid to yield the recombinant shuttle vehicles, Bacmid-H9HA. And then the Bacmid-H9HA was further used to transfect High Five insect cells. The cells were identified by PCR, SDS-PAGE and Western blotting. [RESULTSIHA gene was inserted in correct orientation downstream of the virus polyhedral protein promoter, and had been expressed in High Five cells with the size of the Hg-HA being approximately 67KD. The expression product could specially react to the anti-sera of H9N2 AIV. [CONCLUSION]HA gene was successfully expressed in insect cell and this provided a good base for produce diagnostic reagent to detect H9 subtype AIV or construct subunit vaccine against AIV.
出处 《中国农学通报》 CSCD 2008年第1期18-22,共5页 Chinese Agricultural Science Bulletin
关键词 禽流感病毒 血凝素蛋白 杆状病毒表达 克隆 Avian Influenza Virus, HA Protein, baculovims expression, cloning
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参考文献13

  • 1卡尔尼克等著,高福等译.禽病学(第十版).北京:中国农业出版社,1999.742-771.
  • 2Anonymous. Avian strain of influenza A virus isolated from human in Hong Kong [J]. Communicable Disease Report CDR Weekly, 1999,(9): 131-134.
  • 3Guo Y J, Li J G, Cheng X W, et al. Discovery of men infected by avian Influenza A (H9N2) virus[J]. Chinese J Exp Clin Virol, 1999, (13):105-108.
  • 4Erica Weir. The changing ecology of avian flu. CMAJ (Canada,s leadings medical journal). 2005,173 (8):869.
  • 5郑其升,刘华雷,张晓勇,周斌,曹瑞兵,任雪枫,李鹏,陈溥言.H_9N_2亚型AIV HA基因的原核表达及间接ELISA方法的建立[J].中国病毒学,2005,20(3):293-297. 被引量:18
  • 6Sambrook J, Fritsch F, Maniatis T. Molecular cloning-a laboratory manual(2nd ed).Cold Spring Harbor Laboratory Press. 1989:888-897.
  • 7王新卫,詹爱军.禽流感病毒的宿主特异性和致病性分子基础[J].长江大学学报(自科版)(中旬),2006,3(1):161-164. 被引量:6
  • 8Gerdon AE, Wright DW, Cliffel DE. Hemagglutinin linear epitope presentation on monolayer-protected clusters elicits strong antibody binding. Biomacromolecules. 2005, 6(6):3419-3424.
  • 9郭广君,吕素芳,王荣富.外源基因表达系统的研究进展[J].科学技术与工程,2006,6(5):582-587. 被引量:38
  • 10谢秋玲,张玲,洪岸,陈小佳,孙奋勇,林剑.杆状病毒表达系统在疫苗研究中的应用[J].中国公共卫生,2004,20(3):367-369. 被引量:8

二级参考文献45

  • 1[1]Busuttil B E,Turney K L,Frauman A G.Protein Expression and Purification,2001;23 (3):369-373
  • 2[2]Leandro P,Lechner M C,Almerda H,et al.Molecular Genetics and Metabolism,2001;73(2):173-178
  • 3[3]Hockney R C.Trends Biotechnol,1994;12:456-463
  • 4[5]de Boer H A,Hui A S.Methods Enzymol,1990;185:103-114
  • 5[6]Birikh K R,Lebedeko E N,Boni I V,et al.Gene,1995;164(2):341-345
  • 6[7]Pugachev K V,Pletnev A G.Biotechniques,1996;20 (3):346-348
  • 7[9]Sharroeks A D.Gene,1994;138(1-2):105-108
  • 8[10]Jain C.Gene,1993;133(1):99-102
  • 9[11]Aitken R,Gilehrist J,Sinelair M C.Gene,1994;144(1):69-73
  • 10[14]Kane J F,Hartiey D L.Tibtech,1988;6:95-102

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