Shen Chen-Hsiang, Chang Yu-Chung, Agniswamy Johnson, Harrison Robert W, Weber Irene T
Department of Biology, Georgia State University, Atlanta, GA 30303, USA.
Department of Biology, Georgia State University, Atlanta, GA 30303, USA; Department of Computer Science, Georgia State University, Atlanta, GA 30303, USA.
J Mol Graph Model. 2015 Nov;62:87-96. doi: 10.1016/j.jmgm.2015.09.006. Epub 2015 Sep 8.
Molecular mechanisms leading to high level drug resistance have been analyzed for the clinical variant of HIV-1 protease bearing 20 mutations (PR20); which has several orders of magnitude worse affinity for tested drugs. Two crystal structures of ligand-free PR20 with the D25N mutation of the catalytic aspartate (PR20D25N) revealed three dimers with different flap conformations. The diverse conformations of PR20D25N included a dimer with one flap in a unique "tucked" conformation; directed into the active site. Analysis of molecular dynamics (MD) simulations of the ligand-free PR20 and wild-type enzymes showed that the mutations in PR20 alter the correlated interactions between two monomers in the dimer. The two flaps tend to fluctuate more independently in PR20 than in the wild type enzyme. Combining the results of structural analysis by X-ray crystallography and MD simulations; unusual flap conformations and weakly correlated inter-subunit motions may contribute to the high level resistance of PR20.
针对携带20个突变的HIV-1蛋白酶临床变体(PR20),已经分析了导致高水平耐药性的分子机制;该变体对测试药物的亲和力要低几个数量级。具有催化天冬氨酸D25N突变的无配体PR20的两个晶体结构(PR20D25N)揭示了具有不同瓣片构象的三个二聚体。PR20D25N的多种构象包括一个二聚体,其中一个瓣片处于独特的“折叠”构象,指向活性位点。对无配体PR20和野生型酶的分子动力学(MD)模拟分析表明,PR20中的突变改变了二聚体中两个单体之间的相关相互作用。与野生型酶相比,PR20中的两个瓣片倾向于更独立地波动。结合X射线晶体学的结构分析结果和MD模拟,异常的瓣片构象和弱相关的亚基间运动可能导致PR20的高水平耐药性。