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重组毕赤酵母高密度发酵表达H5N1禽流感病毒糖蛋白 被引量:4

Expression of H5N1 avian influenza virus haemagglutinin protein in Pichia pastoris by high-density cell fermentation
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摘要 在10L发酵罐中,对高致病性禽流感病毒H5N1糖蛋白HA1在重组毕赤酵母中的表达发酵工艺进行了研究。通过分批补料培养方法探讨不同培养温度、诱导温度、补料方式、微量元素等因素对菌体的生长以及重组蛋白表达和活性的影响。结果表明,菌种培养和诱导温度均为25oC时,菌体的生长、分泌表达量和与广谱中和抗体的反应活性较好;微量元素是影响重组HA1蛋白生物活性的重要因素;通过优化高密度发酵工艺,H5N1病毒糖蛋白HA1在发酵罐中的表达量比摇瓶培养提高10.5倍,达到约120mg/L,为大规模制备高致病性禽流感病毒的HA1蛋白奠定了基础。 We produced high pathogenic avian influenza H5N1 haemagglutinin protein HA1 in recombinant Pichia pastoris in a 10 L fermentor, to establish a high-density cell fermentation method. We studied the effects of different factors such as culture temperature, induced temperature, methanol feeding methods, trace elements on the growth of Pichia pastoris, the yield and the biologic activity of recombinant HA1 protein. The culture temperature in pre-induced and induced stage were optimized at 25~C to adapt cell growth and recombinant protein expression, and induced temperature at 25~C also resulted in higher biologic activity of rHA1 than at 30~C. The binding activity of rHA1 against a wide-spectrum neutralizing antibody was susceptible to the presence of any trace elements, although trace elements would essentially benefit for the cell fermentation. As a conclusion, the expression level of rHA1 produced with optimized fermentation process reached 120 mg/L, which was 10.5 times higher than the one produced in regular shaking flask. The resultant high-density cell fermentation can likely produce rHA1 of H5N1 in large scale.
出处 《生物工程学报》 CAS CSCD 北大核心 2009年第5期773-778,共6页 Chinese Journal of Biotechnology
基金 国家高技术研究发展计划(863计划)(No.2006AA020905) 国家自然科学基金(No.30500092) 科技部工程中心建设项目(No.2005DC105006) 教育部新世纪优秀人才培养计划(No.NCET-05-0567) 厦门市科技计划社会发展项目(No.3502Z20073001)资助~~
关键词 毕赤酵母 高致病性禽流感病毒 H5N1 HA1 发酵 Pichia pastoris, high pathogenic avian influenza, H5N1, HA1, fermentation
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  • 1Guan Y, Poon LL, Cheung CY, et al. H5N1 influenza: A protean pandemic threat. Proc Natl Acad Sci USA, 2004, 101(21): 8156-8161.
  • 2Subbarao K, Klimov A, Katz J, et al. Characterization of an avian influenza A (H5N1) virus isolated from a child with a fatal respiratory illness. Science, 1998, 279(5349): 393-396.
  • 3Chanturiya AN, Basanez G, Schubert U, et al. PB1-F2, an influenza A virus-encoded proapoptotic mitochondrial protein, creates variably sized pores in planar lipid membranes. J Virol, 2004, 78(12): 6304-6312.
  • 4Nicholson KG, Wood JM, Zambon M. Influenza. Lancet, 2003, 362(9397): 1733-1745.
  • 5Lee CW, Senne DA, Suarez DL. Effect of vaccine use in the evolution of Mexican lineage H5N2 avian influenza virus. J Virol, 2004, 78(15): 8372-8381.
  • 6Knossow M, Daniels RS, Douglas AR, et al. Three-dimensional structure of an antigenic mutant of the influenza virus haemagglutinin. Nature, 1984, 311(5987): 678-680.
  • 7Castrucci MR, Campitelli L, Ruggieri A, et al. Antigenic and sequence analysis of H3 influenza virus haemagglutinins from pigs in Italy. J Gen Virol, 1994, 75 (Pt 2): 371-379.
  • 8Kawaoka Y, Bean WJ, Webster RG. Evolution of the hemagglutinin of equine H3 influenza viruses. Virology, 1989, 169(2): 283-292.
  • 9Webster RG. Wet markets-a continuing source of severe acute respiratory syndrome and influenza? Lancet, 2004, 363(9404): 234-236.
  • 10Ito T, Suzuki Y, Takada A, et al. Differences in sialic acid-galactose linkages in the chicken egg amnion and allantois influence human influenza virus receptor specificity and variant selection. J Virol, 1997, 71(4): 3357-3362.

二级参考文献55

  • 1曹振,秦亚曼,王传彬,王宏伟,陈西钊,苏敬良,田克恭.抗H5N1亚型禽流感病毒血凝素单克隆抗体的制备及鉴定[J].中国实验动物学报,2004,12(4):197-199. 被引量:2
  • 2张健红,李寅,刘和,刘登如,陈坚.一株碱性果胶酶高产细菌的分离、系统发育分析和产酶条件的初步优化[J].应用与环境生物学报,2005,11(3):354-358. 被引量:39
  • 3丁凤平,张秀芝.碱性果胶酶的研制[J].药物生物技术,1994,1(2):36-39. 被引量:8
  • 4何水珍,郑子峥,吴婷,谢明辉,苗季,张军,夏宁邵.戊型肝炎病毒细胞吸附模型的建立及病毒吸附区域初步研究[J].病毒学报,2006,22(6):426-430. 被引量:16
  • 5Hasslacher M, Schall M, Hayn M. High-level intracellular expression of hydroxynitrile lyase from the tropical rubber tree Hevea brasiliensis in microbial hosts[J]. Protein Expr Purif, 1997,11:61.
  • 6Clare JJ, Rayment FB, Ballantine SP, et al. High-level expression of tetanus toxin fragment C in Pichia pastoris strains containing multiple tandem integrations of the gene[J]. Bio/Technology, 1991,9:455.
  • 7Werten MM, van den Bosch TJ, Wind RD, et al. High-yield secretion of recombinant gelatins by Pichia pastoris[J]. Yeast, 1999,15:1087.
  • 8Dale C,Allen A, Fogerly S. Pichia pastoris:a eukaryotic system for the largescale production of biopharmaccutical[J]. Biopharm, 1999,11:36.
  • 9Clare JJ, Romanos MA, Rayment FB, et al Production of mouse epidermal growth factor in yeast:high-level secretion using Pichia pastoris strains containing multiple gene copies[J]. Gene, 1991,105:205.
  • 10Wenhui W,Mark AB, Bradley AP, et al. MOD600eling Pichia pastoris growth on methanol and optimizing the prOD600uction of a recombinant protein, the Heavy-chain fragment C of Botulinum neurotoxin Serotype A[J]. Bioengineering, 2000,20(1):1.

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