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Screening of hepatocyte proteins binding to complete S protein of hepatitis B virus by yeast-two hybrid system 被引量:1

Screening of hepatocyte proteins binding to complete S protein of hepatitis B virus by yeast-two hybrid system
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摘要 AIM: To investigate the biological function of complete S protein and to look for proteins interacting with complete S protein in hepatocytes.METHODS: We constructed bait plasmid expressing complete S protein of HBV by cloning the gene of complete S protein into pGBKT7, then the recombinant plasmid DNA was transformed into yeast AH109 (a type). The transformed yeast AH109 was mated with yeast Y187 (α type) containing liver cDNA library plasmid in 2xYPDA medium. Diploid yeast was plated on synthetic dropout nutrient medium (SD/Trp-Leu-His-Ade) containing X-α-gal for selection and screening. After extracting and sequencing of plasmids from positive (blue) colonies, we underwent sequence analysis by bioinformatics.RESULTS: Nineteen colonies were selected and sequenced.Among them, five colonies were Homo sapiens solute carrier family 25, member 23 (SLC25A23), one was Homo sapiens calreticulin, one was human serum albumin (ALB)gene, one was Homo sapiens metallothionein 2A, two were Homo sapiens betaine-homocysteine methyltransferase,three were Homo sapiensNa+ and H+ coupled amino acid transport system N, one was Homo sapiens CD81 antigen (target of anti-proliferative antibody 1) (CD81), three were Homo sapiens diazepam binding inhibitor, two colonies were new genes with unknown function.CONCLUSION: The yeast-two hybrid system is an effective method for identifying hepatocyte proteins interacting with complete S protein of HBV. The complete S protein may bind to different proteins i.e., its multiple functions in vivo. AIM: To investigate the biological function of complete S protein and to look for proteins interacting with complete S protein in hepatocytes. METHODS: We constructed bait plasmid expressing complete S protein of HBV by cloning the gene of complete S protein into pGBKT7, then the recombinant plasmid DNA was transformed into yeast AH109 (a type). The transformed yeast AH109 was mated with yeast Y187 (α type) containing liver cDNA library plasmid in 2×YPDA medium. Diploid yeast was plated on synthetic dropout nutrient medium (SD/-Trp-Leu-His-Ade) containing X-α-gal for selection and screening. After extracting and sequencing of plasmids from positive (blue) colonies, we underwent sequence analysis by bioinformatics. RESULTS: Nineteen colonies were selected and sequenced. Among them, five colonies were Homo sapiens solute carrier family 25, member 23 (SLC25A23), one was Homo sapiens calrer.iculin, one was human serum albumin (ALB) gene, one was Homo sapiens metallothionein 2A, two were Homo sapiens betaine-homocysteine methyltransferase, three were Homo sapiens Na+ and H+coupled amino acid transport system N, one was Homo sapiens CD81 antigen (target of anti-proliferative antibody 1) (CD81), three were Homo sapiens diazepam binding inhibitor, two colonies were new genes with unknown function. CONCLUSION: The yeast-two hybrid system is an effective method for identifying hepatocyte proteins interacting with complete S protein of HBV. The complete S protein may bind to different proteins i.e., its multiple functions in vivo.
出处 《World Journal of Gastroenterology》 SCIE CAS CSCD 2005年第25期3899-3904,共6页 世界胃肠病学杂志(英文版)
基金 Supported by the National Natural Science Foundation of China, No. C03011402, No. C30070690the Science and Technique Foundation of PLA during the 9th Five-year plan period, No. 98D063 the Launching Foundation for Students Studying Abroad of PLA, No. 98H038 the Youth Science and Technique Foundation of PLA during the 10lh Five-year plan period, No. 01Q138and the Science & Technique Foundation of PLA during the 10th Five-year plan period, No. 01MB135
关键词 肝细胞蛋白结合物 前S蛋白 乙型肝炎病毒 杂交系统 Complete S protein Yeast-two hybrid system Hepatitis B virus
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  • 1董菁,成军,王勤环,皇甫竞坤,施双双,张国庆,洪源,李莉,斯崇文.慢性乙型肝炎患者体内乙型肝炎病毒DNA序列异质性及准种特点的研究[J].中华医学杂志,2002,82(2):81-85. 被引量:37
  • 2[1]Karo N,Hijikta M,Ootsuyma Y,et al.Molecular cloning of the human hepatitis C virus genome from Japanese patients with non-A,non-B hepatitis.Proc Natl Acid Sci USA 1990;87(24):9524-8.
  • 3[2]Pileri P,Uematsu Y,Campagnoli S,et al.Binding of hepatitis C virus to CD81.Science 1998;282:938-40.
  • 4[3]Higginbottom A,Quinn ER,Kuo CC,et al.Identification of amino acid residues in CD81 critical for interaction with hepatitis C virus envelope glycoprotein E2.J Viro12000;74:3642-9.
  • 5[4]Oren R,Takahashi S,Doss C,Levy R,Levy S.TAPA-1,the target of an antiproliferative antibody,defines a new family of transmembrane proteins.Mol Cell Biol 1990;10(8):4007-15.
  • 6[5]Tachibana I,Hemler ME.Role oftransmembrane 4 super-family(TM4SF)proteins CD9 and CD81 in muscle cell fusion and myotube maintenance.J Cell Biol 1999;146(4):893-904.
  • 7[6]Cao J,Qi ZT.CD81:a novel receptor of hepatitis C virus.NatlMed J China 2001;81(2):126-7.
  • 8[7]Flint M,Maidens C,Loomis-price LD,et al.Characterization of hepatitis C virus E2 glycoprotein interaction with a putative cellular receptor,CD81.J Virol 1999;73:6235-44.
  • 9[8]Di Bisceglie AM.Hepatitis C-viology and future antiviral targets.Am J Med 1999;107(6B):45S-S.
  • 10[9]Flint M,Dubuisson J,Maidens C,et al.Functional characterization of intracellular and secreted forms of a truncated hepatitis C virus E2 glycoprotein.J Virol 2000;74:702-9.

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