Gay B, Tournier J, Chazal N, Carrière C, Boulanger P
Laboratoire de Virologie et Pathogénèse Moléculaire (CNRS UMR 5812), Faculté de Médecine, Montpellier, France.
Virology. 1998 Aug 1;247(2):160-9. doi: 10.1006/viro.1998.9237.
The determinants for HIV-1 particle morphology were investigated using various deletion and insertion mutants of the Gap precursor protein (Gag) expressed in baculovirus-infected cells and ultrastructural analysis of membrane-enveloped Gag particles under the electron microscope. Five discrete regions were found to influence the size, the variability in dimension, and the sphericity of the particles: (i) the matrix (MA) N-terminal domain, within residues 10-21, the junctions of (ii) MA-CA (capsid), (iii) CA-spacer peptide SP1 and (iv) nucleocapsid (NC)-SP2, and (v) the p6gag C-terminus. Internal regions (ii), (iii), and (iv) contained HIV-1 protease cleavage sites separating major structural domains. No particle assembly was observed for am276, a MA-CA polyprotein mutant lacking the C-terminal third of the CA domain. However, MA-CA domains including the MHR (residues 277-306), or downstream sequence to CA residue 357, resulted in the assembly into tubular or filamentous structures, suggesting a helical symmetry of Gag packing. Mutant amb374, derived from amb 357 by further addition of the heptadecapeptide motif HKARVLAEAMSQVTNSA, overlapping the CA-SP1 junction and the SP1 domain, showed a drastic change in the pattern of Gag assembly, compared to amb357, with formation of spherical particles. These data suggested a novel function for the spacer domain SP1, acting as a spherical shape determinant of the Gag particle which would negatively affect the helical symmetry of assembly of the Gag precursor molecules conferred by the MHR and the downstream CA sequence, within residues 307-357.
利用杆状病毒感染细胞中表达的间隙前体蛋白(Gag)的各种缺失和插入突变体,以及在电子显微镜下对膜包裹的Gag颗粒进行超微结构分析,研究了HIV-1颗粒形态的决定因素。发现有五个离散区域会影响颗粒的大小、尺寸变异性和球形度:(i)基质(MA)N端结构域,位于第10至21位残基内,(ii)MA-衣壳(CA)的连接处,(iii)CA-间隔肽SP1和(iv)核衣壳(NC)-SP2的连接处,以及(v)p6gag C端。内部区域(ii)、(iii)和(iv)包含HIV-1蛋白酶切割位点,这些位点分隔主要结构域。对于am276,一种缺失CA结构域C端三分之一的MA-CA多蛋白突变体,未观察到颗粒组装。然而,包括MHR(第277至306位残基)或CA残基357下游序列的MA-CA结构域,导致组装成管状或丝状结构,表明Gag包装具有螺旋对称性。突变体amb374由amb 357通过进一步添加十七肽基序HKARVLAEAMSQVTNSA衍生而来,该基序与CA-SP1连接处和SP1结构域重叠,与amb357相比,其Gag组装模式发生了剧烈变化,形成了球形颗粒。这些数据表明间隔结构域SP1具有一种新功能,作为Gag颗粒的球形决定因素,它会对由MHR和第307至357位残基内的下游CA序列赋予的Gag前体分子组装的螺旋对称性产生负面影响。