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通过定点诱变构建和表达乙型肝炎表面抗原“a”决定簇内的逃逸变异体。

Construction and expression of hepatitis B surface antigen escape variants within the "a" determinant by site directed mutagenesis.

作者信息

Golsaz Shirazi Forough, Amiri Mohammad Mehdi, Mohammadi Hamed, Bayat Ali Ahmad, Roohi Azam, Khoshnoodi Jalal, Zarnani Amir Hassan, Jeddi-Tehrani Mahmood, Kardar Gholam Ali, Shokri Fazel

机构信息

Department of Immunology, School of Public Health, Tehran University of Medical Sciences, Tehran, Iran, e-mail:

出版信息

Iran J Immunol. 2013 Sep;10(3):127-38.

Abstract

BACKGROUND

The antibody response to hepatitis B surface antigen (HBsAg) controls hepatitis B virus infection. The "a" determinant of HBsAg is the most important target for protective antibody response, diagnosis and immunoprophylaxis. Mutations in this area may induce immune escape mutants and affect the performance of HBsAg assays.

OBJECTIVES

To construct clinically relevant recombinant mutant forms of HBsAg and assessment of their reactivity with anti-HBs monoclonal antibodies (MAbs).

METHODS

Wild type (wt) and mutant (mt) HBsAg genes were constructed by site directed mutagenesis and SEOing PCR. The amplified genes were inserted into pCMV6-neo plasmid and transfected in CHO cell line. The expression of wt- and mtHBsAg was assessed by commercial ELISA assays and stable cells were established and cloned by limiting dilution. The recombinant mutants were further characterized using a panel of anti-HBs monoclonal antibodies (MAbs) and the pattern of their reactivity was assessed by ELISA.

RESULTS

Ten HBsAg mutants having single mutation within the "a" determinant including P120E, T123N, Q129H, M133L, K141E, P142S, D144A, G145R, N146S and C147S together with a wt form were successfully constructed and expressed in CHO cells. Reactivity of anti-HBs MAbs with mtHBsAgs displayed different patterns. The effect of mutations on antibody binding differed depending on the amino acid involved and its location within the ''a'' determinant. Mutation at amino acids 123 and 145 resulted in either complete loss or significant reduction of binding to all anti-HBs MAbs.

CONCLUSION

Our panel of mtHBsAgs is a valuable tool for assessment of the antibody response to HBV escape mutants and may have substantial implications in HBV immunological diagnostics.

摘要

背景

对乙型肝炎表面抗原(HBsAg)的抗体反应可控制乙型肝炎病毒感染。HBsAg的“a”决定簇是保护性抗体反应、诊断及免疫预防的最重要靶点。该区域的突变可能诱导免疫逃逸突变体并影响HBsAg检测的性能。

目的

构建具有临床相关性的重组HBsAg突变体形式,并评估其与抗-HBs单克隆抗体(MAbs)的反应性。

方法

通过定点诱变和SEOing PCR构建野生型(wt)和突变型(mt)HBsAg基因。将扩增的基因插入pCMV6-neo质粒并转染至CHO细胞系。通过商业ELISA检测评估wt-HBsAg和mt-HBsAg的表达,并通过有限稀释法建立稳定细胞株并进行克隆。使用一组抗-HBs单克隆抗体(MAbs)对重组突变体进行进一步鉴定,并通过ELISA评估其反应性模式。

结果

成功构建了10个在“a”决定簇内具有单个突变的HBsAg突变体,包括P120E、T123N、Q129H、M133L、K141E、P142S、D144A、G145R、N146S和C147S,以及一个wt形式,并在CHO细胞中表达。抗-HBs MAbs与mt-HBsAgs的反应性呈现不同模式。突变对抗体结合的影响因所涉及的氨基酸及其在“a”决定簇中的位置而异。第123和145位氨基酸的突变导致与所有抗-HBs MAbs的结合完全丧失或显著降低。

结论

我们的mt-HBsAgs组是评估对HBV逃逸突变体的抗体反应的有价值工具,可能对HBV免疫诊断有重要意义。

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