Cherpillod P, Beck K, Zurbriggen A, Wittek R
Institut de Biologie Animale, University of Lausanne, Lausanne, Switzerland.
J Virol. 1999 Mar;73(3):2263-9. doi: 10.1128/JVI.73.3.2263-2269.1999.
The biological properties of wild-type A75/17 and cell culture-adapted Onderstepoort canine distemper virus differ markedly. To learn more about the molecular basis for these differences, we have isolated and sequenced the protein-coding regions of the attachment and fusion proteins of wild-type canine distemper virus strain A75/17. In the attachment protein, a total of 57 amino acid differences were observed between the Onderstepoort strain and strain A75/17, and these were distributed evenly over the entire protein. Interestingly, the attachment protein of strain A75/17 contained an extension of three amino acids at the C terminus. Expression studies showed that the attachment protein of strain A75/17 had a higher apparent molecular mass than the attachment protein of the Onderstepoort strain, in both the presence and absence of tunicamycin. In the fusion protein, 60 amino acid differences were observed between the two strains, of which 44 were clustered in the much smaller F2 portion of the molecule. Significantly, the AUG that has been proposed as a translation initiation codon in the Onderstepoort strain is an AUA codon in strain A75/17. Detailed mutation analyses showed that both the first and second AUGs of strain A75/17 are the major translation initiation sites of the fusion protein. Similar analyses demonstrated that, also in the Onderstepoort strain, the first two AUGs are the translation initiation codons which contribute most to the generation of precursor molecules yielding the mature form of the fusion protein.
野生型A75/17和细胞培养适应型 Onderstepoort犬瘟热病毒的生物学特性存在显著差异。为了进一步了解这些差异的分子基础,我们分离并测序了野生型犬瘟热病毒株A75/17的附着蛋白和融合蛋白的蛋白质编码区。在附着蛋白中,Onderstepoort株与A75/17株之间共观察到57个氨基酸差异,这些差异均匀分布在整个蛋白质上。有趣的是,A75/17株的附着蛋白在C末端含有三个氨基酸的延伸。表达研究表明,无论有无衣霉素,A75/17株的附着蛋白的表观分子量均高于Onderstepoort株的附着蛋白。在融合蛋白中,两株病毒之间观察到60个氨基酸差异,其中44个聚集在分子中小得多的F2部分。值得注意的是,在Onderstepoort株中被提议作为翻译起始密码子的AUG在A75/17株中是AUA密码子。详细的突变分析表明,A75/17株的第一个和第二个AUG都是融合蛋白的主要翻译起始位点。类似的分析表明,在Onderstepoort株中,前两个AUG也是对产生成熟形式融合蛋白的前体分子生成贡献最大的翻译起始密码子。