首页> 外文期刊>Journal of Virology >Localization of neutralizing regions of the envelope gene of feline leukemia virus by using anti-synthetic peptide antibodies.
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Localization of neutralizing regions of the envelope gene of feline leukemia virus by using anti-synthetic peptide antibodies.

机译:使用抗合成肽抗体,猫型白血病病毒包膜基因的中和区域的定位。

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We synthesized 27 synthetic peptides corresponding to approximately 80% of the sequences encoding gp70 and p15E of Gardner-Arnstein feline leukemia virus (FeLV) subtype B. The peptides were conjugated to keyhole limpet hemocyanin and injected into rabbits for preparation of antipeptide antisera. These sera were then tested for their ability to neutralize a broad range of FeLV isolates in vitro. Eight peptides elicited neutralizing responses against subtype B isolates. Five of these peptides corresponded to sequences of gp70 and three to p15E. The ability of these antipeptide antisera to neutralize FeLV subtypes A and C varied. In certain circumstances, failure to neutralize a particular isolate corresponded to sequence changes within the corresponding peptide region. However, four antibodies which preferentially neutralized the subtype B viruses were directed to epitopes in common with Sarma subtype C virus. These results suggest that distal changes in certain subtypes (possibly glycosylation differences) alter the availability of certain epitopes in one virus isolate relative to another. We prepared a "nest" of overlapping peptides corresponding to one of the neutralizing regions of gp70 and performed slot blot analyses with both antipeptide antibodies and a monoclonal antibody which recognized this epitope. We were able to define a five-amino-acid sequence required for reactivity. Comparisons were made between an anti-synthetic peptide antibody and a monoclonal antibody reactive to this epitope for the ability to bind both peptide and virus, as well as to neutralize virus in vitro. Both the anti-synthetic peptide and the monoclonal antibodies bound peptide and virus to high titers. However, the monoclonal antibody had a 4-fold-higher titer against virus and a 10-fold-higher neutralizing titer than did the anti-synthetic peptide antibody. Competition assays were performed with these two antibodies adjusted to equivalent antivirus titers against intact virions affixed to tissue culture plates. The monoclonal antibody had a greater ability to compete for virus binding, which suggested that differences in neutralizing titers may relate to the relative affinities of these antisera for the peptide conformation in the native structure.
机译:我们合成了对应于编码Garner-Arnstein猫型白血病病毒(FELV)亚型B的GP70和P15E的约80%的合成肽。肽与孔孔颗粒血糖蛋白缀合并注射到兔子中以制备抗肽抗血清。然后测试这些血清的能力在体外中和各种FELV分离物的能力。八个肽引发反对亚型B分离物的中和反应。这些肽中的五个对应于GP70和3至P15e的序列。这些抗肽抗血清中和FELV亚型A和C变化的能力。在某些情况下,未能中和特定的分离物对应于相应的肽区域内的序列变化。然而,优选中和亚型B病毒的四种抗体被引导至SARMA亚型C病毒的群体。这些结果表明某些亚型(可能糖基化差异)的远端变化改变了一个病毒中相对于另一个病毒分离物中某些表位的可用性。我们制备了与GP70的中和区域之一相对应的重叠肽的“巢”,并用抗肽抗体和识别该表位的单克隆抗体进行了槽印迹分析。我们能够定义反应性所需的五氨基酸序列。在抗合成肽抗体和对该表位反应的单克隆抗体之间进行比较,以便能够结合肽和病毒,以及体外中和病毒。抗合成肽和单克隆抗体都结合肽和病毒至高滴度。然而,单克隆抗体具有4倍较高的滴度,免受抗合成肽抗体的10倍高的中和滴度。用这两种抗体进行竞争测定,该抗体调节至与固定在组织培养板上的完整的病毒粒中的等效抗病毒滴度。单克隆抗体具有更大的竞争病毒结合的能力,这表明中和滴度的差异可涉及这些抗血清对于天然结构中的肽构象的相对亲态。

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