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由源自猫白血病病毒糖蛋白序列的合成寡肽所表征的病毒中和及增强表位。

Virus neutralizing and enhancing epitopes characterized by synthetic oligopeptides derived from the feline leukaemia virus glycoprotein sequence.

作者信息

Nick S, Klaws J, Friebel K, Birr C, Hunsmann G, Bayer H

机构信息

Department of Virology and Immunology, Deutsches Primatenzentrum, Göttingen, F.R.G.

出版信息

J Gen Virol. 1990 Jan;71 ( Pt 1):77-83. doi: 10.1099/0022-1317-71-1-77.

Abstract

Synthetic peptides that mimic antigenic determinants of viral proteins were used in vaccine studies of feline leukaemia virus (FeLV) infection. Immunoreactive epitopes on FeLV gp70 and p15E were predicted according to the criteria of their terminal position, hydrophilicity and the probability of them constituting helical structures. Nineteen peptides, consisting of seven to 19 amino acid residues, were synthesized, of which two peptides were derived from the FeLV subtype A, 16 from subtype B and one from subtype C. Rabbits were immunized with individual peptides coupled to keyhole limpet haemocyanin and the specificity and biological activities of these hyperimmune sera were determined by ELISA, Western blotting, virus neutralization and cytotoxicity assays. All sera reacted specifically with the immunizing peptide. Twelve of the 19 peptides induced antibodies against purified gp85 and antibodies to 11 peptides reacted with the whole virus. One peptide representing the carboxy terminus of the transmembrane protein p15E, and two peptides derived from the external glycoprotein gp70 elicited neutralizing antibodies, whereas antisera against four peptides enhanced virus infection in vitro. None of the peptide antisera mediated complement lysis of FeLV-infected cells.

摘要

模拟病毒蛋白抗原决定簇的合成肽被用于猫白血病病毒(FeLV)感染的疫苗研究。根据FeLV gp70和p15E上免疫反应性表位的末端位置、亲水性以及它们构成螺旋结构的可能性标准进行预测。合成了19种由7至19个氨基酸残基组成的肽,其中2种肽源自A型FeLV,16种源自B型,1种源自C型。用与钥孔血蓝蛋白偶联的单个肽免疫兔子,并通过ELISA、蛋白质印迹、病毒中和及细胞毒性试验测定这些超免疫血清的特异性和生物学活性。所有血清均与免疫肽发生特异性反应。19种肽中的12种诱导出针对纯化gp85的抗体,11种肽的抗体与完整病毒发生反应。一种代表跨膜蛋白p15E羧基末端的肽以及两种源自外膜糖蛋白gp70的肽引发了中和抗体,而针对四种肽的抗血清在体外增强了病毒感染。没有一种肽抗血清介导FeLV感染细胞的补体裂解。

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