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通过HIV-1逆转录酶和整合酶免疫肽中的小序列变化产生HIV-1/HIV-2交叉反应性肽抗血清。

Generation of HIV-1/HIV-2 cross-reactive peptide antisera by small sequence changes in HIV-1 reverse transcriptase and integrase immunizing peptides.

作者信息

Klutch M, Woerner A M, Marcus-Sekura C J, Levin J G

机构信息

Division of Viral Products, Center for Biologics Evaluation and Research, Food and Drug Administration, Bethesda, MD, USA.

出版信息

J Biomed Sci. 1998;5(3):192-202. doi: 10.1007/BF02253469.

DOI:10.1007/BF02253469
PMID:9678490
Abstract

We have generated peptide antisera against selected regions in HIV-1 and HIV-2 reverse transcriptase (RT) and integrase (IN) to investigate the specificity of determinants governing the immune response. Peptides representing homologous regions (>50%) in the N- and C-termini and central portions of these proteins were synthesized and injected into rabbits. HIV-1 and HIV-2 IN peptide antisera inhibited IN-mediated cleavage of an HIV-1 DNA oligonucleotide substrate in a 3' processing assay, while anti-RT or normal sera had no effect. None of the RT sera inhibited RT activity. In Western blots, HIV-2 antisera directed against RT or IN peptides recognized HIV-2 RT and IN proteins, respectively, as expected, but also cross-reacted with the corresponding HIV-1 proteins. By contrast, corresponding HIV-1 antisera were type-specific. In some cases, HIV-1 cross-reactive antisera could be generated by immunization with HIV-1 chimeric peptides with as few as two residues in the HIV-1 sequence changed to the corresponding HIV-2 amino acids. The finding that a type-specific response can be converted to a cross-reactive response suggests alternate strategies for developing new diagnostic reagents which detect HIV-1 and HIV-2. In addition, our results provide a general model for generating HIV peptide vaccines with dual specificity against HIV-1 and HIV-2.

摘要

我们已针对HIV-1和HIV-2逆转录酶(RT)及整合酶(IN)的选定区域制备了肽抗血清,以研究决定免疫反应特异性的决定簇。合成了代表这些蛋白质N端和C端及中央部分同源区域(>50%)的肽,并将其注射到兔子体内。在3'加工试验中,HIV-1和HIV-2整合酶肽抗血清抑制了整合酶介导的HIV-1 DNA寡核苷酸底物的切割,而抗逆转录酶血清或正常血清则无此作用。所有逆转录酶血清均未抑制逆转录酶活性。在蛋白质免疫印迹法中,针对逆转录酶或整合酶肽的HIV-2抗血清分别识别出HIV-2逆转录酶和整合酶蛋白,正如预期的那样,但也与相应的HIV-1蛋白发生交叉反应。相比之下,相应的HIV-1抗血清具有型特异性。在某些情况下,用HIV-1嵌合肽免疫可产生HIV-1交叉反应抗血清,其中HIV-1序列中只有两个残基变为相应的HIV-2氨基酸。型特异性反应可转化为交叉反应的这一发现,为开发检测HIV-1和HIV-2的新型诊断试剂提供了替代策略。此外,我们的结果为制备对HIV-1和HIV-2具有双重特异性的HIV肽疫苗提供了一个通用模型。

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