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Expression of a Carrot Antifreeze Protein Gene in Escherichia coli

Expression of a Carrot Antifreeze Protein Gene in Escherichia coli
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摘要 The recombinant expression vector pET43.1b-AFP, which contains full encoding region of a carrot 36 kD antifreeze protein (AFP) gene was constructed. The recombinant was transformed into expression host carrying T7 RNA polymerase gene (DE3 lysogen) and induced by 1 mmol稬-1 IPTG (isopropyl--D-thiogalactoside) to express 110 kD polypeptide of AFP fusion protein. The analysis of product solubility revealed that pET43.1b-AFP was predominately soluble, and the expressed amount reached the maximum after the IPTG treatment for 3 h. The recombinant expression vector pET43.1b-AFP, which contains full encoding region of a carrot 36 kD antifreeze protein (AFP) gene was constructed. The recombinant was transformed into expression host carrying T7 RNA polymerase gene (DE3 lysogen) and induced by 1 mmol稬-1 IPTG (isopropyl--D-thiogalactoside) to express 110 kD polypeptide of AFP fusion protein. The analysis of product solubility revealed that pET43.1b-AFP was predominately soluble, and the expressed amount reached the maximum after the IPTG treatment for 3 h.
出处 《Forestry Studies in China》 CAS 2003年第4期22-25,共4页 中国林学(英文版)
基金 the National Natural Science Foundation of China (Grant No.39800118 30271067)Fok Ying Tung Education Foundation (71030) and the Key Teachers Foundation of the Education Ministry of China
关键词 antifreeze protein (AFP) fusion protein induced expression polymerase chain reaction antifreeze protein gene antifreeze protein (AFP) fusion protein induced expression polymerase chain reaction antifreeze protein gene
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参考文献18

  • 1[1]Charles A K, Arthor L D V, Larry D O. 1984. Fish antifreeze protein and the freezing and recrystallization of ice. Nature.308:295-296
  • 2[2]Chrunyk B A, Evans J, Lillquist J et al. 1993. Inclusion body formation and protein stability in sequence variants of interleukin-1 β1. Journal of Biological Chemistry. 268:18 053-18 061
  • 3[3]Davies P L, Hew P L, Hew C L. 1990. Biochemistry of fish antifreeze proteins. FASEB J. 4:2 460-2 467
  • 4[4]DeVries A L. 1972. Glycoproteins as biological antifreeze agents in Antarctic fishes. Science. 172:1 152-1 155
  • 5[5]Duman J G, Olsen T M. 1993. Thermal hysteresis protein activity in bacteria, fungi, and phytogenetically diverse plants. Cryobiology. 30 (3): 322-328
  • 6[6]Duman J G, Wu D W, Olsen T M et al. 1993.Thermal-hysteresis proteins. In: Advances in low-temperature biology (Steponkus P ed). London: JAI Press. 2:131-182
  • 7[7]Graham L A, Liou Y C, Walker V K et al. 1997. Hyperactive antifreeze protein from beetles. Science. 388:727-728
  • 8[8]Griffith M, Ala P, Yang D S C et al. 1992. Antifreeze protein produced endogenously in winter rye leaves. Plant Physiol.100:583-5868.
  • 9[9]Hon W C, Griffith M, Mlynarz A et al. 1995. Antifreeze proteins in winter rye are similar to pathogenesis-related proteins. Plant Physiol. 109 (3): 879-889
  • 10[10]Jaenieke R. 1991. Protein-folding: Local structures, domains,subunits and assemblies. Biochemistry. 30:3 147-3 161

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