...
首页> 外文期刊>ACS Chemical Biology >Structures of Darunavir-Resistant HIV?1 Protease Mutant Reveal Atypical Binding of Darunavir to Wide Open Flaps
【24h】

Structures of Darunavir-Resistant HIV?1 Protease Mutant Reveal Atypical Binding of Darunavir to Wide Open Flaps

机译:抗耐达拉那韦的HIV?1蛋白酶突变体的结构揭示了达拉那韦与大张开襟翼的非典型结合

获取原文
获取原文并翻译 | 示例

摘要

The molecular basis for high resistance to clinical inhibitors of HIV-1 protease (PR) was examined for the variant designated PR_(P51) that was selected for resistance to darunavir (DRV). High resolution crystal structures of PR_(P51) with the active site D25N mutation revealed a ligand-free form and an inhibitor-bound form showing a unique binding site and orientation for DRV. This inactivating mutation is known to increase the dimer dissociation constant and decrease DRV affinity of PR. The PRP51?D25N dimers were in the open conformation with widely separated flaps, as reported for other highly resistant variants. PRP51?D25N dimer bound two DRV molecules and showed larger separation of 8.7 ? between the closest atoms of the two flaps compared with 4.4 ? for the ligand-free structure of this mutant. The ligand-free structure, however, lacked van der Waals contacts between Ile50 and Pro81′ from the other subunit in the dimer, unlike the majority of PR structures. DRV is bound inside the active site cavity; however, the inhibitor is oriented almost perpendicular to its typical position and exhibits only 2 direct hydrogen bond and two water-mediated interactions with atoms of PR_(P51)?D25N compared with 11 hydrogen bond interactions seen for DRV bound in the typical position in wild-type enzyme. The atypical location of DRV may provide opportunities for design of novel inhibitors targeting the open conformation of PR drug-resistant mutants.
机译:对命名为PR_(P51)的变异体检测了对HIV-1蛋白酶(PR)的临床抑制剂具有高抗性的分子基础,该变异体被选为对darunavir(DRV)具有抗性。具有活性位点D25N突变的PR_(P51)的高分辨率晶体结构显示无配体形式和抑制剂结合形式,显示了DRV的独特结合位点和方向。已知这种失活突变会增加二聚体解离常数并降低PR的DRV亲和力。据报道,PRP51?D25N二聚体呈开放构型,带有广泛分开的襟翼,如针对其他高抗性变体的报道。 PRP51?D25N二聚体结合了两个DRV分子并显示出更大的8.7?分离。两个襟翼的最接近原子之间的距离为4.4?该突变体的无配体结构。然而,与大多数PR结构不同,无配体的结构缺少Ile50和Pro81'与二聚体中其他亚基之间的范德华接触。 DRV结合在活动部位腔内;然而,该抑制剂的取向几乎垂直于其典型位置,与PR_(P51)?D25N原子仅表现出2个直接氢键和两个水介导的相互作用,而在野生环境中,DRV结合在该典型位置时具有11个氢键相互作用型酶。 DRV的非典型位置可能为设计针对PR抗药性突变体开放构象的新型抑制剂提供了机会。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号