Norais N, Tang D, Kaur S, Chamberlain S H, Masiarz F R, Burke R L, Marcus F
Chiron Corporation, Emeryville, California 94608, USA.
J Virol. 1996 Nov;70(11):7379-87. doi: 10.1128/JVI.70.11.7379-7387.1996.
Glycoprotein B (gB) is the most highly conserved envelope glycoprotein of herpesviruses. The gB protein is required for virus infectivity and cell penetration. Recombinant forms of gB being used for the development of subunit vaccines are able to induce virus-neutralizing antibodies and protective efficacy in animal models. To gain structural information about the protein, we have determined the location of the disulfide bonds of a 696-amino-acid residue truncated, recombinant form of herpes simplex virus type 2 glycoprotein gB (HSV gB2t) produced by expression in Chinese hamster ovary cells. The purified protein, which contains virtually the entire extracellular domain of herpes simplex virus type 2 gB, was digested with trypsin under nonreducing conditions, and peptides were isolated by reversed-phase high-performance liquid chromatography (HPLC). The peptides were characterized by using mass spectrometry and amino acid sequence analysis. The conditions of cleavage (4 M urea, pH 7) induced partial carbamylation of the N termini of the peptides, and each disulfide peptide was found with two or three different HPLC retention times (peptides with and without carbamylation of either one or both N termini). The 10 cysteines of the molecule were found to be involved in disulfide bridges. These bonds were located between Cys-89 (C1) and Cys-548 (C8), Cys-106 (C2) and Cys-504 (C7), Cys-180 (C3) and Cys-244 (C4), Cys-337 (C5) and Cys-385 (C6), and Cys-571 (C9) and Cys-608 (C10). These disulfide bonds are anticipated to be similar in the corresponding gBs from other herpesviruses because the 10 cysteines listed above are always conserved in the corresponding protein sequences.
糖蛋白B(gB)是疱疹病毒中最保守的包膜糖蛋白。gB蛋白是病毒感染性和细胞穿透所必需的。用于亚单位疫苗开发的重组形式的gB能够在动物模型中诱导病毒中和抗体和产生保护效力。为了获得该蛋白的结构信息,我们确定了在中国仓鼠卵巢细胞中表达产生的截短为696个氨基酸残基的单纯疱疹病毒2型糖蛋白gB(HSV gB2t)重组形式的二硫键位置。纯化后的蛋白几乎包含单纯疱疹病毒2型gB的整个胞外结构域,在非还原条件下用胰蛋白酶消化,然后通过反相高效液相色谱(HPLC)分离肽段。使用质谱和氨基酸序列分析对肽段进行表征。切割条件(4M尿素,pH7)导致肽段N端部分氨甲酰化,并且每个二硫键肽段具有两到三个不同的HPLC保留时间(肽段的一个或两个N端有或没有氨甲酰化)。发现该分子的10个半胱氨酸参与二硫键形成。这些键位于半胱氨酸-89(C1)和半胱氨酸-548(C8)之间、半胱氨酸-106(C2)和半胱氨酸-504(C7)之间、半胱氨酸-180(C3)和半胱氨酸-244(C4)之间、半胱氨酸-337(C5)和半胱氨酸-385(C6)之间,以及半胱氨酸-571(C9)和半胱氨酸-608(C10)之间。预计这些二硫键在来自其他疱疹病毒的相应gB中是相似的,因为上述10个半胱氨酸在相应的蛋白质序列中总是保守的。