Vogt V M, Pepinsky R B, Southard L E
J Virol. 1985 Oct;56(1):31-9. doi: 10.1128/JVI.56.1.31-39.1985.
The internal structural proteins of avian sarcoma and leukemia viruses are derived from a precursor polypeptide that is the product of the viral gag gene. The N-terminal domain of the precursor gives rise to p19, a protein that interacts with the lipid envelope of the virus and that may also interact with viral RNA. The C terminus of p19 from the Prague C strain of Rous sarcoma virus was previously assigned to a tyrosine residue 175 amino acids from the N terminus. We have used metabolic labeling and carboxypeptidase digestion to show that the C terminus of p19 is actually tyrosine 155. This implies the existence of a sixth gag protein 22 amino acids in length and located between p19 and p10 on the gag precursor. The p19 species of some recombinant avian sarcoma viruses and of the defective endogenous virus derived from the ev-1 locus migrate on sodium dodecyl sulfate-polyacrylamide gel electrophoresis as if they were about 4,000 daltons smaller than p19. We have elucidated the structure of these forms, called p19 beta, by analysis of the proteins and determination of the DNA sequence of the p19 region of the gag gene from ev-1 and ev-2. Esterification of carboxyl groups completely suppressed the differences in migration of p19 and p19 beta. Peptide mapping showed the altered mobility to be determined by sequences in the C-terminal cyanogen bromide fragment of the proteins. We conclude from the DNA sequence that a single glutamate-lysine alteration is responsible for the altered electrophoretic mobility.
禽肉瘤和白血病病毒的内部结构蛋白源自一种前体多肽,该前体多肽是病毒gag基因的产物。前体的N端结构域产生p19,一种与病毒脂质包膜相互作用且可能也与病毒RNA相互作用的蛋白质。来自劳氏肉瘤病毒布拉格C株的p19的C端先前被确定为距N端175个氨基酸处的一个酪氨酸残基。我们利用代谢标记和羧肽酶消化表明,p19的C端实际上是酪氨酸155。这意味着存在一种长度为22个氨基酸的第六种gag蛋白,位于gag前体上的p19和p10之间。一些重组禽肉瘤病毒以及源自ev-1位点的缺陷型内源性病毒的p19在十二烷基硫酸钠-聚丙烯酰胺凝胶电泳上的迁移情况,就好像它们比p19小约4000道尔顿。我们通过对蛋白质进行分析并测定来自ev-1和ev-2的gag基因p19区域的DNA序列,阐明了这些称为p19β的形式的结构。羧基的酯化完全抑制了p19和p19β迁移的差异。肽图谱显示迁移率的改变由蛋白质C端溴化氰片段中的序列决定。我们从DNA序列得出结论,单个谷氨酸-赖氨酸的改变导致了电泳迁移率的改变。