Mayne J T, Rice C M, Strauss E G, Hunkapiller M W, Strauss J H
Virology. 1984 Apr 30;134(2):338-57. doi: 10.1016/0042-6822(84)90302-7.
A small glycoprotein (E3) was purified from the culture fluid of Sindbis virus-infected primary chick embryo fibroblasts. Tryptic peptide mapping and pulse-chase studies verified that this protein was produced as a by-product of the cleavage of the precursor protein PE2 to produce the envelope glycoprotein E2. A 2600-fold purification was achieved via a procedure which used differential ethanol precipitation, gel filtration, ion-exchange chromatography, and affinity chromatography on a lentil lectin column. Amino acid composition analysis, N-terminal microsequencing, and labeling studies yielded information about the fine structure of E3 and its relationship to E2 and virion maturation. The N-terminal sequence of E3 is identical to that of PE2, including the result that 90% of the molecules appear to be blocked. The first 19 amino acids are uncharged and presumably serve as the signal sequence for the insertion of PE2 into the membrane of the endoplasmic reticulum, but this sequence is unusual in that it is not immediately cleaved from PE2 and is glycosylated at the asparagine at position 14. The two residues at the C-terminus of E3, Lys-Arg, are removed during or shortly after cleavage from PE2. Labeling studies imply that, although the PE2----E2 + E3 cleavage is necessary for virion budding, these two events are not closely coupled. E3 is cleaved and released into the culture fluid under conditions where virions do not bud, and the kinetics of the appearance of E3 in the culture fluid and E2 in virions are quite dissimilar. The maturation of E3 is discussed as it relates to the processing of cellular membrane and secretory glycoproteins.
从小鼠 Sindbis 病毒感染的原代鸡胚成纤维细胞培养液中纯化出一种小糖蛋白(E3)。胰蛋白酶肽图谱分析和脉冲追踪研究证实,该蛋白是前体蛋白 PE2 裂解产生包膜糖蛋白 E2 的副产物。通过使用分级乙醇沉淀、凝胶过滤、离子交换色谱和扁豆凝集素柱亲和色谱的方法,实现了 2600 倍的纯化。氨基酸组成分析、N 端微量测序和标记研究提供了有关 E3 的精细结构及其与 E2 和病毒粒子成熟关系的信息。E3 的 N 端序列与 PE2 相同,包括 90%的分子似乎被封闭的结果。前 19 个氨基酸不带电荷,推测作为将 PE2 插入内质网膜的信号序列,但该序列不同寻常之处在于它不会立即从 PE2 上裂解下来,并且在第 14 位的天冬酰胺处被糖基化。E3 C 端的两个残基 Lys-Arg 在从 PE2 裂解期间或之后不久被去除。标记研究表明,虽然 PE2 裂解为 E2 + E3 对于病毒粒子出芽是必要的,但这两个事件并非紧密偶联。在病毒粒子不出芽的条件下,E3 被裂解并释放到培养液中,培养液中 E3 和病毒粒子中 E2 出现的动力学非常不同。讨论了 E3 的成熟与细胞膜和分泌糖蛋白加工的关系。