Clish C B, Peyton D H, Barklis E
Department of Chemistry, Portland State University, Oregon 97207-0751, USA.
Eur J Biochem. 1998 Oct 1;257(1):69-77. doi: 10.1046/j.1432-1327.1998.2570069.x.
The capsid domain of retroviral Gag proteins possesses a single highly conserved subdomain termed the major homology region (MHR). While the mutagenesis of residues in the MHR will impair virus infectivity, the precise solution structure and function of the MHR is not known. To aid the structure/function characterization of the MHR, the structures of synthetic peptides encompassing the MHR of the human immunodeficiency virus type I (HIV-1) and Moloney murine leukemia virus (MoMLV) capsid proteins were investigated by several techniques. Homology-based secondary-structure prediction suggested that the HIV-1 and MoMLV peptides could form 50% and 38% alpha-helix, respectively. CD studies indicated that, in the presence of 50% trifluoroethanol, the HIV-1 peptide adopts an alpha-helical structure over half of its length, while the MoMLV peptide is over one third alpha-helix. Further analysis by 1H-NMR suggested that the C-terminal portion of the MHR of each virus forms a helix in aqueous solution. Distance-geometry structures of each peptide were calculated from NOE distance restraints and were refined by restrained molecular dynamics. The C-terminal halves of both peptides were observed to be in an alpha-helical conformation, while the N-terminal halves were disordered. Furthermore, both helices were amphipathic with high conservation of amino acid side-chain character, suggesting that a conserved helical MHR C-terminus is essential to retroviral capsid protein function.
逆转录病毒群抗原(Gag)蛋白的衣壳结构域拥有一个单一的高度保守亚结构域,称为主要同源区域(MHR)。虽然MHR中残基的诱变会损害病毒感染性,但MHR的确切溶液结构和功能尚不清楚。为了辅助对MHR进行结构/功能表征,采用多种技术研究了包含I型人类免疫缺陷病毒(HIV-1)和莫洛尼氏鼠白血病病毒(MoMLV)衣壳蛋白MHR的合成肽的结构。基于同源性的二级结构预测表明,HIV-1和MoMLV肽分别可形成50%和38%的α-螺旋。圆二色性(CD)研究表明,在50%三氟乙醇存在的情况下,HIV-1肽在其长度的一半以上呈现α-螺旋结构,而MoMLV肽超过三分之一为α-螺旋。通过1H-NMR进一步分析表明,每种病毒MHR的C末端部分在水溶液中形成螺旋。根据核Overhauser效应(NOE)距离限制计算每种肽的距离几何结构,并通过受限分子动力学进行优化。观察到两种肽的C末端一半呈α-螺旋构象,而N末端一半无序。此外,两个螺旋均具有两亲性,氨基酸侧链特征高度保守,这表明保守的螺旋MHR C末端对逆转录病毒衣壳蛋白功能至关重要。