Ciftci Halilibrahim, Sever Belgin, Ayan Esra, Can Mustafa, DeMirci Hasan, Otsuka Masami, TuYuN Amaç Fatih, Tateishi Hiroshi, Fujita Mikako
Department of Drug Discovery, Science Farm Ltd., Kumamoto 862-0976, Japan.
Medicinal and Biological Chemistry Science Farm Joint Research Laboratory, Faculty of Life Sciences, Kumamoto University, Kumamoto 862-0973, Japan.
Pharmaceuticals (Basel). 2022 Oct 12;15(10):1255. doi: 10.3390/ph15101255.
The HIV-1 Gag protein binds to the host cell membrane and assembles into immature particles. Then, in the course of immature virion budding, activated protease cleaves Gag into its main components: MA, CA, NC, and p6 proteins. The highly basic residues of MA predominantly interact with the acidic head of phosphatidyl-inositol-4,5-bisphosphate (PI(4,5)P2) inserted into the membrane. Our research group developed L-Heptanoylphosphatidyl Inositol Pentakisphosphate (L-HIPPO) and previously confirmed that this compound bound to the MA more strongly than PI(4,5)P2 and inositol hexakisphosphate (IP6) did. Therefore, herein we rationally designed eight new L-HIPPO derivatives based on the fact that the most changeable parts of L-HIPPO were two acyl chains. After that, we employed molecular docking for eight compounds via Maestro software using high-resolution crystal structures of MA in complex with IP6 (PDB IDs: 7E1I, 7E1J, and 7E1K), which were recently elucidated by our research group. The most promising docking scores were obtained with benzene-inserted compounds. Thus, we generated a library containing 213 new aromatic group-inserted L-HIPPO derivatives and performed the same molecular docking procedure. According to the results, we determined the nine new L-HIPPO derivatives most effectively binding to the MA with the most favorable scoring functions and pharmacokinetic properties for further exploration.
HIV-1 群抗原蛋白与宿主细胞膜结合并组装成未成熟颗粒。然后,在未成熟病毒粒子出芽过程中,活化的蛋白酶将群抗原裂解为其主要成分:基质蛋白(MA)、衣壳蛋白(CA)、核衣壳蛋白(NC)和 p6 蛋白。基质蛋白的高度碱性残基主要与插入膜中的磷脂酰 - 肌醇 - 4,5 - 二磷酸(PI(4,5)P2)的酸性头部相互作用。我们的研究小组开发了 L - 庚酰磷脂酰肌醇五磷酸(L - HIPPO),并且先前已证实该化合物与基质蛋白的结合比 PI(4,5)P2 和肌醇六磷酸(IP6)更强。因此,在此我们基于 L - HIPPO 最可变的部分是两条酰基链这一事实,合理设计了八种新的 L - HIPPO 衍生物。之后,我们通过 Maestro 软件使用我们研究小组最近阐明的基质蛋白与 IP6 复合物的高分辨率晶体结构(PDB 编号:7E1I、7E1J 和 7E1K)对这八种化合物进行分子对接。插入苯的化合物获得了最有前景的对接分数。因此,我们生成了一个包含 213 种新的插入芳香基团的 L - HIPPO 衍生物的文库,并进行了相同的分子对接程序。根据结果,我们确定了九种与基质蛋白结合最有效且具有最有利评分函数和药代动力学性质的新 L - HIPPO 衍生物,以供进一步研究。