Hiremath C N, Filman D J, Grant R A, Hogle J M
Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, MA 02115, USA.
Acta Crystallogr D Biol Crystallogr. 1997 Sep 1;53(Pt 5):558-70. doi: 10.1107/S0907444997000954.
Crystal structures of the Mahoney strain of type 1 poliovirus complexed with the antiviral compounds R80633 and R77975 were determined at 2.9 A resolution. These compounds block infection by preventing conformational changes required for viral uncoating. In various drug-poliovirus complexes reported earlier, no significant conformational changes were found in the structures of the capsid proteins. In the structures reported here, the strain of virus is relatively insensitive to these antivirals. Correspondingly, significant conformational changes are necessary to accommodate the drug. These conformational changes affect both the immediate vicinity of the drug binding site, and more distant loops located near the fivefold axis. In addition, small but concerted shifts of the centers of mass of the major capsid proteins consistently have been detected whose magnitudes are correlated inversely with the effectiveness of the drugs. Collectively, the drug complexes appear to sample the conformational repertoire of poliovirus near equilibrium, and thus provide a possible model for the earliest stages of viral uncoating during infection.
1型脊髓灰质炎病毒马奥尼株与抗病毒化合物R80633和R77975复合后的晶体结构在2.9埃分辨率下得以确定。这些化合物通过阻止病毒脱壳所需的构象变化来阻断感染。在先前报道的各种药物 - 脊髓灰质炎病毒复合物中,衣壳蛋白结构未发现显著构象变化。在此报道的结构中,该病毒株对这些抗病毒药物相对不敏感。相应地,需要显著的构象变化来容纳药物。这些构象变化既影响药物结合位点的紧邻区域,也影响位于五重轴附近较远的环。此外,一直检测到主要衣壳蛋白质心有小但协同的位移,其大小与药物效力呈反比。总体而言,药物复合物似乎在接近平衡的状态下对脊髓灰质炎病毒的构象库进行抽样,从而为感染期间病毒脱壳的最早阶段提供了一个可能的模型。