Clish C B, Peyton D H, Barklis E
Department of Chemistry, Portland State University, OR 97207-0751, USA.
FEBS Lett. 1996 Jan 2;378(1):43-7. doi: 10.1016/0014-5793(95)01419-5.
The capsid (CA) domain of retroviral Gag proteins possesses one subdomain, the major homology region (MHR), which is conserved among nearly all avian and mammalian retroviruses. While it is known that the mutagenesis of residues in the MHR will impair virus infectivity, the precise structure and function of the MHR is not known. In order to obtain further information on the MHR, we have examined the structure of a synthetic peptide encompassing the MHR of human immunodeficiency virus type I (HIV-1) CA protein. Multiple sequence alignment and secondary structure prediction indicate that the peptide could form 50% alpha-helix and 10% beta-sheet. In addition, circular dichroism studies indicate that, in the presence of 50% trifluoroethanol (TFE), the peptide adopts an alpha-helical structure over half of its length. Further analysis by proton nuclear magnetic resonance spectroscopy suggests that the C-terminal portion of the MHR forms a helix in aqueous solution. Upon the addition of TFE, the position of the helix remains nearly constant, but the magnitude of the changes in H alpha chemical shifts of the residues indicate a more stable helix. These results suggest that a helical C-terminus of retroviral MHRs may be integral to the function of this region.
逆转录病毒群抗原(Gag)蛋白的衣壳(CA)结构域有一个子结构域,即主要同源区域(MHR),几乎在所有禽源和哺乳动物逆转录病毒中都保守。虽然已知MHR中残基的诱变会损害病毒感染性,但MHR的确切结构和功能尚不清楚。为了获得关于MHR的更多信息,我们研究了一种包含I型人类免疫缺陷病毒(HIV-1)CA蛋白MHR的合成肽的结构。多序列比对和二级结构预测表明,该肽可形成50%的α-螺旋和10%的β-折叠。此外,圆二色性研究表明,在50%三氟乙醇(TFE)存在的情况下,该肽在其长度的一半以上呈现α-螺旋结构。通过质子核磁共振光谱进一步分析表明,MHR的C末端部分在水溶液中形成螺旋。加入TFE后,螺旋的位置几乎保持不变,但残基的Hα化学位移变化幅度表明螺旋更稳定。这些结果表明,逆转录病毒MHR的螺旋C末端可能是该区域功能所必需的。