Dey Barna, Pancera Marie, Svehla Krisha, Shu Yuuei, Xiang Shi-Hua, Vainshtein Jeffrey, Li Yuxing, Sodroski Joseph, Kwong Peter D, Mascola John R, Wyatt Richard
Vaccine Research Center, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892, USA.
J Virol. 2007 Jun;81(11):5579-93. doi: 10.1128/JVI.02500-06. Epub 2007 Mar 14.
The human immunodeficiency virus type 1 exterior gp120 envelope glycoprotein is highly flexible, and this flexibility may contribute to the inability of monomeric gp120 immunogens to elicit broadly neutralizing antibodies. We previously showed that an S375W modification of a critical interfacial cavity central to the primary receptor binding site, the Phe43 cavity, stabilizes gp120 into the CD4-bound state. However, the immunological effects of this cavity-altering replacement were never tested. Subsequently, we screened other mutations that, along with the S375W alteration, might further stabilize the CD4-bound state. Here, we define a selected second cavity-altering replacement, T257S, and analyze the double mutations in several gp120 envelope glycoprotein contexts. The gp120 glycoproteins with the T257S-plus-S375W double mutation (T257S+S375W) have a superior antigenic profile compared to the originally identified single S375W replacement in terms of enhanced recognition by the broadly neutralizing CD4 binding-site antibody b12. Isothermal titration calorimetry measuring the entropy of the gp120 interaction with CD4 indicated that the double mutant was also stabilized into the CD4-bound state, with increasing relative fixation between core, full-length monomeric, and full-length trimeric versions of gp120. A significant increase in gp120 affinity for CD4 was also observed for the cavity-filling mutants relative to wild-type gp120. The most conformationally constrained T257S+S375W trimeric gp120 proteins were selected for immunogenicity analysis in rabbits and displayed a trend of improvement relative to their wild-type counterparts in terms of eliciting neutralizing antibodies. Together, the results suggest that conformational stabilization may improve the ability of gp120 to elicit neutralizing antibodies.
人类免疫缺陷病毒1型(HIV-1)的外膜糖蛋白gp120具有高度的灵活性,这种灵活性可能导致单体gp120免疫原无法引发广泛中和抗体。我们之前表明,对主要受体结合位点核心的关键界面腔(即苯丙氨酸43腔,Phe43腔)进行S375W修饰,可使gp120稳定在与CD4结合的状态。然而,这种改变腔结构的替换的免疫学效应从未得到测试。随后,我们筛选了其他突变,这些突变与S375W改变一起,可能进一步稳定与CD4结合的状态。在这里,我们确定了一个选定的第二个改变腔结构的替换T257S,并在几种gp120包膜糖蛋白背景下分析了双突变。与最初鉴定的单一S375W替换相比,具有T257S加S375W双突变(T257S+S375W)的gp120糖蛋白在被广泛中和的CD4结合位点抗体b12增强识别方面具有更优的抗原谱。等温滴定量热法测量gp120与CD4相互作用的熵表明,双突变体也稳定在与CD4结合的状态,gp120的核心、全长单体和全长三聚体版本之间的相对固定增加。相对于野生型gp120,还观察到腔填充突变体对CD4的亲和力显著增加。选择构象限制最大的T257S+S375W三聚体gp120蛋白在兔子中进行免疫原性分析,相对于野生型对应物,其在引发中和抗体方面显示出改善的趋势。总之,结果表明构象稳定可能提高gp120引发中和抗体的能力。