Gao Yanjuan, Ma Ying, Yang Guangde, Li Yiping
School of Pharmacy, Xi'an Jiaotong University, No. 76 Yanta West Road, Xi'an 710061, China.
Molecules. 2016 Jun 29;21(7):857. doi: 10.3390/molecules21070857.
Phosphatidylinositol 3-kinase α (PI3Kα) is an attractive target for anticancer drug design. Liphagal, isolated from the marine sponge Aka coralliphaga, possesses the special "liphagane" meroterpenoid carbon skeleton and has been demonstrated as a PI3Kα inhibitor. Molecular docking and molecular dynamics simulations were performed to explore the dynamic behaviors of PI3Kα binding with liphagal, and free energy calculations and energy decomposition analysis were carried out by use of molecular mechanics/Poisson-Boltzmann (generalized Born) surface area (MM/PB(GB)SA) methods. The results reveal that the heteroatom rich aromatic D-ring of liphagal extends towards the polar region of the binding site, and the D-ring 15-hydroxyl and 16-hydroxyl form three hydrogen bonds with Asp810 and Tyr836. The cyclohexyl A-ring projects up into the upper pocket of the lipophilic region, and the hydrophobic/van der Waals interactions with the residues Met772, Trp780, Ile800, Ile848, Val850, Met922, Phe930, Ile932 could be the key interactions for the affinity of liphagal to PI3Kα. Thus, a new strategy for the rational design of more potent analogs of liphagal against PI3Kα is provided. Our proposed PI3Kα/liphagal binding mode would be beneficial for the discovery of new active analogs of liphagal against PI3Kα.
磷脂酰肌醇3-激酶α(PI3Kα)是抗癌药物设计中一个具有吸引力的靶点。从海洋海绵珊瑚栖阿克海绵中分离出的脂伐他汀,具有特殊的“脂伐烷”半萜类碳骨架,已被证明是一种PI3Kα抑制剂。进行了分子对接和分子动力学模拟,以探索PI3Kα与脂伐他汀结合的动态行为,并使用分子力学/泊松-玻尔兹曼(广义玻恩)表面积(MM/PB(GB)SA)方法进行了自由能计算和能量分解分析。结果表明,脂伐他汀富含杂原子的芳香D环向结合位点的极性区域延伸,D环的15-羟基和16-羟基与Asp810和Tyr836形成三个氢键。环己基A环向上伸入亲脂区域的上口袋,与Met772、Trp780、Ile800、Ile848、Val850、Met922、Phe930、Ile932残基的疏水/范德华相互作用可能是脂伐他汀与PI3Kα亲和力的关键相互作用。因此,提供了一种合理设计更有效的脂伐他汀类似物以对抗PI3Kα的新策略。我们提出的PI3Kα/脂伐他汀结合模式将有助于发现新的脂伐他汀抗PI3Kα活性类似物。