Laboratory of Cell Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Proc Natl Acad Sci U S A. 2011 Jul 12;108(28):11440-5. doi: 10.1073/pnas.1101414108. Epub 2011 Jun 27.
The initial step in HIV-1 infection occurs with the binding of cell surface CD4 to trimeric HIV-1 envelope glycoproteins (Env), a heterodimer of a transmembrane glycoprotein (gp41) and a surface glycoprotein (gp120). The design of soluble versions of trimeric Env that display structural and functional properties similar to those observed on intact viruses is highly desirable from the viewpoint of designing immunogens that could be effective as vaccines against HIV/AIDS. Using cryoelectron tomography combined with subvolume averaging, we have analyzed the structure of SOSIP gp140 trimers, which are cleaved, solubilized versions of the ectodomain of trimeric HIV-1 Env. We show that unliganded gp140 trimers adopt a quaternary arrangement similar to that displayed by native unliganded trimers on the surface of intact HIV-1 virions. When complexed with soluble CD4, Fab 17b, which binds to gp120 at its chemokine coreceptor binding site, or both soluble CD4 and 17b Fab, gp140 trimers display an open conformation in which there is an outward rotation and displacement of each gp120 protomer. We demonstrate that the molecular arrangements of gp120 trimers in the closed and open conformations of the soluble trimer are the same as those observed for the closed and open states, respectively, of trimeric gp120 on intact HIV-1 BaL virions, establishing that soluble gp140 trimers can be designed to mimic the quaternary structural transitions displayed by native trimeric Env.
HIV-1 感染的初始步骤是细胞表面 CD4 与三聚体 HIV-1 包膜糖蛋白(Env)结合,Env 是跨膜糖蛋白(gp41)和表面糖蛋白(gp120)的异二聚体。从设计免疫原的角度来看,设计能够有效作为 HIV/AIDS 疫苗的免疫原,非常需要具有类似于完整病毒上观察到的结构和功能特性的三聚体 Env 的可溶性版本。使用冷冻电子断层扫描结合子体积平均法,我们分析了 SOSIP gp140 三聚体的结构,SOSIP gp140 三聚体是三聚体 HIV-1 Env 的外域经切割和溶解后的版本。我们表明,未配体结合的 gp140 三聚体采用类似于天然未配体结合的三聚体在完整 HIV-1 病毒粒子表面显示的四级排列。当与可溶性 CD4、结合 gp120 的趋化因子核心受体结合位点的 Fab 17b 或可溶性 CD4 和 17b Fab 复合物结合时,gp140 三聚体显示出开放构象,其中每个 gp120 原聚体发生向外旋转和位移。我们证明,在可溶性三聚体的封闭和开放构象中,gp120 三聚体的分子排列与在完整 HIV-1 BaL 病毒粒子上分别观察到的封闭和开放状态的三聚体 gp120 相同,从而确立了可溶性 gp140 三聚体可以设计为模拟天然三聚体 Env 显示的四级结构转变。