Ni H, Burns N J, Chang G J, Zhang M J, Wills M R, Trent D W, Sanders P G, Barrett A D
Department of Pathology F-05, University of Texas Medical Branch, Galveston 77555-0605.
J Gen Virol. 1994 Jun;75 ( Pt 6):1505-10. doi: 10.1099/0022-1317-75-6-1505.
Nucleotide sequences of the 5' non-coding region and the structural protein genes of the live, attenuated Japanese encephalitis vaccine virus strains SA14-2-8 and SA14-5-3 and the wild-type parental strain SA14/USA were determined. SA14-2-8 differed from SA14/USA by 13 nucleotides and eight amino acids whereas SA14-5-3 differed from SA14/USA by 15 nucleotides and eight amino acids. A comparison of the 5' non-coding region and amino acid sequences of the structural proteins of these two attenuated vaccine strains and of vaccine strains SA14-14-2/PHK and SA14-14-2/PDK with three sequences of their wild-type parent SA14 virus was performed. This revealed only two common amino acid substitutions at positions 138 and 176 in the envelope (E) protein. The substitution at E138 was predicted to cause a change in the secondary structure of the E protein. These two amino acid substitutions in the E protein may contribute to attenuation of the Japanese encephalitis vaccine viruses.
测定了减毒活疫苗株SA14 - 2 - 8和SA14 - 5 - 3以及野生型亲本株SA14/USA的5'非编码区和结构蛋白基因的核苷酸序列。SA14 - 2 - 8与SA14/USA相比有13个核苷酸和8个氨基酸的差异,而SA14 - 5 - 3与SA14/USA相比有15个核苷酸和8个氨基酸的差异。对这两种减毒疫苗株以及疫苗株SA14 - 14 - 2/PHK和SA14 - 14 - 2/PDK的5'非编码区和结构蛋白的氨基酸序列与其野生型亲本SA14病毒的三个序列进行了比较。结果显示,包膜(E)蛋白的138位和176位仅存在两个共同的氨基酸替换。预测E138位的替换会导致E蛋白二级结构的改变。E蛋白中的这两个氨基酸替换可能有助于乙型脑炎疫苗病毒的减毒。