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鉴定间隔肽1中一种稳定未成熟CA-SP1晶格的HIV-1突变。

Identification of an HIV-1 Mutation in Spacer Peptide 1 That Stabilizes the Immature CA-SP1 Lattice.

作者信息

Fontana Juan, Keller Paul W, Urano Emiko, Ablan Sherimay D, Steven Alasdair C, Freed Eric O

机构信息

Laboratory of Structural Biology Research, National Institute of Arthritis and Musculoskeletal and Skin Diseases, National Institutes of Health, Bethesda, Maryland, USA.

Virus-Cell Interaction Section, HIV Dynamics and Replication Program, Center for Cancer Research, National Cancer Institute, Frederick, Maryland, USA.

出版信息

J Virol. 2015 Nov 4;90(2):972-8. doi: 10.1128/JVI.02204-15. Print 2016 Jan 15.

Abstract

UNLABELLED

Upon release of HIV-1 particles from the infected cell, the viral protease cleaves the Gag polyprotein at specific sites, triggering maturation. During this process, which is essential for infectivity, the capsid protein (CA) reassembles into a conical core. Maturation inhibitors (MIs) block HIV-1 maturation by interfering with protease-mediated CA-spacer peptide 1 (CA-SP1) processing, concomitantly stabilizing the immature CA-SP1 lattice; virions from MI-treated cells retain an immature-like CA-SP1 lattice, whereas mutational abolition of cleavage at the CA-SP1 site results in virions in which the CA-SP1 lattice converts to a mature-like form. We previously reported that propagation of HIV-1 in the presence of MI PF-46396 selected for assembly-defective, compound-dependent mutants with amino acid substitutions in the major homology region (MHR) of CA. Propagation of these mutants in the absence of PF-46396 resulted in the acquisition of second-site compensatory mutations. These included a Thr-to-Ile substitution at SP1 residue 8 (T8I), which results in impaired CA-SP1 processing. Thus, the T8I mutation phenocopies PF-46396 treatment in terms of its ability to rescue the replication defect imposed by the MHR mutations and to impede CA-SP1 processing. Here, we use cryo-electron tomography to show that, like MIs, the T8I mutation stabilizes the immature-like CA-SP1 lattice. These results have important implications for the mechanism of action of HIV-1 MIs; they also suggest that T8I may provide a valuable tool for structural definition of the CA-SP1 boundary region, which has thus far been refractory to high-resolution analysis, apparently because of conformational flexibility in this region of Gag.

IMPORTANCE

HIV-1 maturation involves dissection of the Gag polyprotein by the viral protease and assembly of a conical capsid enclosing the viral ribonucleoprotein. Maturation inhibitors (MIs) prevent the final cleavage step at the site between the capsid protein (CA) and spacer peptide 1 (SP1), apparently by binding at this site and denying the protease access. Additionally, MIs stabilize the immature-like CA-SP1 lattice, preventing release of CA into the soluble pool. We previously found that T8I, a mutation in SP1, rescues a PF-46396-dependent CA mutant and blocks CA-SP1 cleavage. In this study, we imaged T8I virions by cryo-electron tomography and showed that T8I mutants, like MI-treated virions, contain an immature CA-SP1 lattice. These results lay the groundwork needed to understand the structure of the CA-SP1 interface region and further illuminate the mechanism of action of MIs.

摘要

未标记

HIV-1颗粒从受感染细胞释放时,病毒蛋白酶在特定位点切割Gag多蛋白,引发成熟过程。在此对感染性至关重要的过程中,衣壳蛋白(CA)重新组装成锥形核心。成熟抑制剂(MIs)通过干扰蛋白酶介导的CA-间隔肽1(CA-SP1)加工来阻断HIV-1成熟,同时稳定未成熟的CA-SP1晶格;来自MI处理细胞的病毒粒子保留未成熟样的CA-SP1晶格,而CA-SP1位点切割的突变消除导致病毒粒子中CA-SP1晶格转变为成熟样形式。我们之前报道,在MI PF-46396存在下HIV-1的增殖会选择在CA的主要同源区域(MHR)有氨基酸取代的组装缺陷型、化合物依赖性突变体。这些突变体在不存在PF-46396的情况下增殖会导致获得第二位点补偿性突变。其中包括SP1残基8处的苏氨酸到异亮氨酸取代(T8I),这导致CA-SP1加工受损。因此,T8I突变在挽救MHR突变造成的复制缺陷以及阻碍CA-SP1加工的能力方面模拟了PF-46396处理。在此,我们使用冷冻电子断层扫描显示,与MIs一样,T8I突变稳定未成熟样的CA-SP1晶格。这些结果对HIV-1 MIs的作用机制具有重要意义;它们还表明T8I可能为CA-SP1边界区域的结构定义提供有价值的工具,该区域迄今为止难以进行高分辨率分析,显然是因为Gag这一区域存在构象灵活性。

重要性

HIV-1成熟涉及病毒蛋白酶切割Gag多蛋白以及组装包裹病毒核糖核蛋白的锥形衣壳。成熟抑制剂(MIs)阻止衣壳蛋白(CA)和间隔肽1(SP1)之间位点的最终切割步骤,显然是通过结合该位点并阻止蛋白酶接近。此外,MIs稳定未成熟样的CA-SP1晶格,防止CA释放到可溶性池中。我们之前发现,SP1中的T8I突变挽救了PF-依赖性CA突变体并阻断CA-SP1切割。在本研究中,我们通过冷冻电子断层扫描对T8I病毒粒子成像,表明T8I突变体与MI处理的病毒粒子一样,含有未成熟的CA-SP1晶格。这些结果为理解CA-SP1界面区域的结构奠定了基础,并进一步阐明了MIs的作用机制。

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