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未切割与成熟人免疫缺陷病毒膜包膜糖蛋白三聚体的比较。

Comparison of Uncleaved and Mature Human Immunodeficiency Virus Membrane Envelope Glycoprotein Trimers.

机构信息

Department of Cancer Immunology and Virology, Dana-Farber Cancer Institute, Department of Microbiology and Immunobiology, Harvard Medical School, Boston, Massachusetts, USA.

Centre de Recherche du CHUM, Department of Microbiology, Infectiology and Immunology, Université de Montréal, Montreal, Canada.

出版信息

J Virol. 2018 May 29;92(12). doi: 10.1128/JVI.00277-18. Print 2018 Jun 15.

Abstract

The mature envelope glycoprotein (Env) spike on the surfaces of human immunodeficiency virus type 1 (HIV-1)-infected cells and virions is derived from proteolytic cleavage of a trimeric gp160 glycoprotein precursor. In these studies, we compared the conformations of cleaved and uncleaved membrane Envs with truncated cytoplasmic tails to those of stabilized soluble gp140 SOSIP.664 Env trimers. Deletion of the gp41 cytoplasmic tail did not significantly affect the sensitivity of viruses with the HIV-1 Env to inhibition by antibodies or a CD4-mimetic compound. After glutaraldehyde fixation and purification from membranes, a cleaved Env exhibited a hydrodynamic radius of ∼10 nm and an antibody-binding profile largely consistent with that expected based on virus neutralization sensitivity. The purified cleaved Env trimers exhibited a hollow architecture with a central void near the trimer axis. Uncleaved Env, cross-linked and purified in parallel, exhibited a hydrodynamic radius similar to that of the cleaved Env. However, the uncleaved Env was recognized by poorly neutralizing antibodies and appeared by negative-stain electron microscopy to sample multiple conformations. Compared with membrane Envs, stabilized soluble gp140 SOSIP.664 Env trimers appear to be more compact, as reflected in their smaller hydrodynamic radii and negative-stain electron microscopy structures. The antigenic features of the soluble gp140 SOSIP.664 Env trimers differed from those of the cleaved membrane Env, particularly in gp120 V3 and some CD4-binding-site epitopes. Thus, proteolytic maturation allows the membrane-anchored Env to achieve a conformation that retains functional metastability but masks epitopes for poorly neutralizing antibodies. The entry of human immunodeficiency virus type 1 (HIV-1) into host cells is mediated by the envelope glycoprotein (Env) spike on the surface of the virus. Host antibodies elicited during natural HIV-1 infection or by vaccination can potentially recognize the Env spike and block HIV-1 infection. However, the changing shape of the HIV-1 Env spike protects the virus from antibody binding. Understanding the shapes of natural and man-made preparations of HIV-1 Envs will assist the development of effective vaccines against the virus. Here, we evaluate the effects of several Env modifications commonly used to produce Env preparations for vaccine studies and the determination of structure. We found that the cleavage of the HIV-1 Env precursor helps Env to assume its natural shape, which resists the binding of many commonly elicited antibodies. Stabilized soluble Envs exhibit more compact shapes but expose some Env elements differently than the natural Env.

摘要

成熟的包膜糖蛋白(Env)刺突位于人类免疫缺陷病毒 1 型(HIV-1)感染细胞和病毒颗粒的表面,来源于三聚体 gp160 糖蛋白前体的蛋白水解切割。在这些研究中,我们将切割和未切割的膜 Env 与截短的细胞质尾巴的构象与稳定的可溶性 gp140 SOSIP.664 Env 三聚体进行了比较。gp41 细胞质尾巴的缺失并未显著影响 HIV-1Env 对抗体或 CD4 模拟化合物抑制的敏感性。用戊二醛固定并从膜中纯化后,切割的 Env 表现出约 10nm 的流体力学半径和与基于病毒中和敏感性的预期大致一致的抗体结合谱。纯化的切割 Env 三聚体表现出中空结构,在三聚体轴附近有一个中央空隙。以平行方式交联和纯化的未切割 Env 表现出与切割 Env 相似的流体力学半径。然而,未切割的 Env 被识别为中和能力差的抗体,并且在负染色电子显微镜下似乎采样了多种构象。与膜 Env 相比,稳定的可溶性 gp140 SOSIP.664 Env 三聚体似乎更加紧凑,这反映在它们较小的流体力学半径和负染色电子显微镜结构中。可溶性 gp140 SOSIP.664 Env 三聚体的抗原特征与切割的膜 Env 不同,特别是在 gp120 V3 和一些 CD4 结合位点表位上。因此,蛋白水解成熟使膜锚定的 Env 能够达到保留功能亚稳性但掩盖中和能力差的抗体的表位的构象。人类免疫缺陷病毒 1 型(HIV-1)进入宿主细胞是由病毒表面的包膜糖蛋白(Env)刺突介导的。在自然的 HIV-1 感染过程中或通过疫苗接种产生的宿主抗体可能能够识别 Env 刺突并阻止 HIV-1 感染。然而,HIV-1Env 刺突的形状变化使病毒免受抗体结合。了解 HIV-1Env 的天然和人工制备物的形状将有助于开发针对该病毒的有效疫苗。在这里,我们评估了几种常用于生产 Env 制剂以进行疫苗研究和结构测定的 Env 修饰的影响。我们发现,HIV-1Env 前体的切割有助于 Env 呈现其自然形状,从而抵抗许多常见抗体的结合。稳定的可溶性 Env 表现出更紧凑的形状,但与天然 Env 相比,暴露了一些不同的 Env 元素。

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