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天然猫白血病病毒变体通过抗体结合表位外的氨基酸变化逃避单克隆抗体的中和作用。

Natural feline leukemia virus variant escapes neutralization by a monoclonal antibody via an amino acid change outside the antibody-binding epitope.

作者信息

Nicolaisen-Strouss K, Kumar H P, Fitting T, Grant C K, Elder J H

机构信息

Department of Molecular Biology, Scripps Clinic and Research Foundation, La Jolla, California 92037.

出版信息

J Virol. 1987 Nov;61(11):3410-5. doi: 10.1128/JVI.61.11.3410-3415.1987.

Abstract

We have molecularly cloned a natural variant of feline leukemia virus subtype B. This isolate is unique in that it is not neutralized by a monoclonal antibody which neutralized all other feline leukemia virus isolates tested, including members of the A, B, and C subtypes. Western immunoblotting indicated that the monoclonal antibody was less able to bind to the gp70 of the resistant isolate (designated lambda B1) than to the gp70s of susceptible viruses. Nucleotide sequence analysis of the envelope gene of lambda B1 revealed a high degree of homology with the susceptible Snyder-Theilen, Gardner-Arnstein, and Rickard subtype B isolates, including the presence of a 5-amino-acid minimal binding epitope required for binding by the neutralizing monoclonal antibody. The only change within the vicinity of this epitope was in a single nucleotide, and this difference changed a proline residue to leucine three amino acids from the N terminus of the binding epitope. Competitive binding studies with synthetic peptides indicated that substitution of leucine for proline resulted in a 10-fold decrease in the ability of the peptide to compete for antibody binding to native antigen. The results are consistent with the interpretation that this amino acid change lowers the affinity of antibody binding, resulting in failure of the antibody to neutralize the variant virus.

摘要

我们已经对猫白血病病毒B亚型的一种天然变体进行了分子克隆。这种分离株的独特之处在于,它不会被一种单克隆抗体中和,而该单克隆抗体能中和所有其他经过测试的猫白血病病毒分离株,包括A、B和C亚型的成员。蛋白质免疫印迹法表明,与易感病毒的gp70相比,该单克隆抗体与抗性分离株(命名为λB1)的gp70结合能力较弱。对λB1包膜基因的核苷酸序列分析显示,它与易感的斯奈德-蒂伦、加德纳-阿恩斯坦和里卡德B亚型分离株高度同源,包括存在中和性单克隆抗体结合所需的一个5氨基酸最小结合表位。该表位附近唯一的变化是一个单核苷酸,这种差异使脯氨酸残基在结合表位N端三个氨基酸处变为亮氨酸。用合成肽进行的竞争性结合研究表明,亮氨酸取代脯氨酸导致肽竞争抗体与天然抗原结合的能力降低了10倍。这些结果符合这样的解释,即这种氨基酸变化降低了抗体结合的亲和力,导致抗体无法中和变异病毒。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cea/255936/a0f60ce74419/jvirol00102-0075-a.jpg

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