Pellett P E, Biggin M D, Barrell B, Roizman B
J Virol. 1985 Dec;56(3):807-13. doi: 10.1128/JVI.56.3.807-813.1985.
We report significant sequence and predicted secondary structure homology between the herpes simplex virus 1 glycoprotein B (gB) and a protein predicted to be encoded by the BALF4 reading frame of Epstein-Barr virus (EBV). Homology was detectable at the DNA level and was highly significant at the protein level and when evolutionary substitution frequencies of amino acids in related proteins were taken into account. Hydropathic analyses predicted that the two proteins possess conserved N-terminal and C-terminal hydrophobic domains. The N-terminal hydrophobic domains share features in common with known cleavable membrane insertion signal sequences. The amino acid sequences of the C-terminal hydrophobic domains predict three adjacent membrane-spanning segments as had been previously predicted for gB. In an alignment of the two amino acid sequences, 247 of 903 gB residues had a matched pair in the BALF4 sequence, and 247 of 854 BALF4 residues were found to have a matched pair in the gB sequence. In addition, all 10 cysteine residues located outside the predicted signal sequence of both proteins were conserved, as were four predicted N-linked glycosylation sites. In all, 43% of the residues in the aligned sequences are predicted to possess equivalent secondary structures. gB is a virion envelope glycoprotein required for virus entry into cells. The domain of gB determining the rate of entry into cells has been mapped; the predicted structure of this domain in gB and the predicted EBV protein are almost identical. Similarly, the cytoplasmic domain of gB postulated to interact with submembrane proteins was also nearly identical in predicted structure to that of the EBV protein. These results suggest that EBV encodes a protein similar in structure and function to the herpes simplex virus 1 gB.
我们报告了单纯疱疹病毒1糖蛋白B(gB)与预计由爱泼斯坦-巴尔病毒(EBV)的BALF4阅读框编码的一种蛋白质之间存在显著的序列和预测二级结构同源性。在DNA水平上可检测到同源性,在蛋白质水平上以及考虑相关蛋白质中氨基酸的进化替代频率时,同源性非常显著。亲水性分析预测这两种蛋白质具有保守的N端和C端疏水域。N端疏水域与已知的可切割膜插入信号序列具有共同特征。C端疏水域的氨基酸序列预测有三个相邻的跨膜片段,正如先前对gB的预测。在两种氨基酸序列的比对中,903个gB残基中的247个在BALF4序列中有匹配对,并且发现854个BALF4残基中的247个在gB序列中有匹配对。此外,两种蛋白质预测信号序列之外的所有10个半胱氨酸残基都是保守的,四个预测的N-连接糖基化位点也是如此。总体而言,比对序列中43%的残基预计具有等效的二级结构。gB是病毒进入细胞所需的病毒体包膜糖蛋白。已确定gB中决定进入细胞速率的结构域;gB中该结构域的预测结构与预测的EBV蛋白几乎相同。同样,推测与膜下蛋白相互作用的gB胞质结构域在预测结构上也与EBV蛋白几乎相同。这些结果表明,EBV编码一种在结构和功能上与单纯疱疹病毒1 gB相似的蛋白质。