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首页> 外文期刊>Journal of Medical Virology >A novel hepatitis B virus variant S 129 (Gln-->Leu): lack of correlation between antigenicity and immunogenicity.
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A novel hepatitis B virus variant S 129 (Gln-->Leu): lack of correlation between antigenicity and immunogenicity.

机译:一种新型的乙型肝炎病毒变异株S 129(Gln-> Leu):抗原性和免疫原性之间缺乏相关性。

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    摘要

    A point mutation has been detected in the "a" determinant of hepatitis B surface antigen (HBsAg) in an infant immunised with hepatitis B vaccine after exposure to hepatitis B virus (HBV). This A-to-T point mutation at nucleotide 540 resulted in a glutamine-to-leucine substitution at amino acid residue 129 (129L). The S gene fragment (nucleotide 58-1072) of this isolate was cloned and used to substitute the wild-type S gene in a plasmid (p3.8II), containing 1.2 copy of full-length HBV genome with expression and replication efficiency. This plasmid p3.8II-129L was used to transfect HepG2 cells. HBsAg expressed by p3.8II-129L showed higher binding efficiency compared with the original plasmid containing the wild-type clone. A panel of 24 anti-HBs monoclonal antibodies (MAbs) was used to characterise the binding efficiency of HBsAg expressed by p3.8II-129L. Eighteen showed higher binding to the antigen, whereas HBsAg expressed by p3.8II-145R gave a consistently lower absorbance or were negative. Surprisingly, when the immunogenicity of plasmid constructs was used for DNA immunisation in Balb/c mice, the anti-HBs response induced by p3.8II-129L was significantly lower than that of the wild-type p3.8II. The lack of correlation between the antigenicity profile (binding of expressed HBsAg to anti-HBs in vitro), and the immunogenicity (induction of anti-HBs by plasmid DNA in vivo) of HBsAg with leucine substitution at position 129 indicates that biological characteristics other than the binding efficiency of HBsAg to anti-HBs could occur in HBsAg variants. These different aspects of the biological characteristics of S mutants merit further investigation. Copyright 1999 Wiley-Liss, Inc.
    机译:在暴露于乙型肝炎病毒(HBV)后接种乙型肝炎疫苗的婴儿中,在乙型肝炎表面抗原(HBsAg)的“ a”决定因素中检测到点突变。核苷酸540处的这种A至T点突变导致在氨基酸残基129(129L)处的谷氨酰胺至亮氨酸取代。克隆了该分离物的S基因片段(核苷酸58-1072),并用于替代质粒(p3.8II)中的野生型S基因,该质粒含有1.2个拷贝的全长HBV基因组,具有表达和复制效率。该质粒p3.8II-129L用于转染HepG2细胞。与包含野生型克隆的原始质粒相比,p3.8II-129L表达的HBsAg显示出更高的结合效率。使用一组24种抗HBs单克隆抗体(MAbs)表征p3.8II-129L表达的HBsAg的结合效率。 18个抗体显示出与抗原的更高结合,而p3.8II-145R表达的HBsAg则始终显示较低的吸光度或为阴性。出乎意料的是,当将质粒构建体的免疫原性用于Balb / c小鼠的DNA免疫时,由p3.8II-129L诱导的抗HBs应答显着低于野生型p3.8II。在第129位被亮氨酸取代的HBsAg的抗原性特征(体外表达的HBsAg与抗HBs的结合)与免疫原性(体内质粒DNA诱导抗HBs)之间缺乏相关性,表明除HBsAg变体可能会发生HBsAg与抗HBs的结合效率。 S突变体生物学特性的这些不同方面值得进一步研究。版权所有1999 Wiley-Liss,Inc.

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