Chen Jianzhong, Wang Jinan, Lai Fengbo, Wang Wei, Pang Laixue, Zhu Weiliang
School of Science, Shandong Jiaotong University Jinan 250014 China
Drug Discovery and Design Center, CAS Key Laboratory of Receptor Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences 555 Zuchongzhi Road Shanghai 201203 China
RSC Adv. 2018 Jul 16;8(45):25456-25467. doi: 10.1039/c8ra05042b.
Heat shock protein 90 (Hsp90) has been an attractive target of potential drug design for antitumor treatment. The current work integrates molecular dynamics (MD) simulations, calculations of binding free energy, and principal component (PC) analysis with scanning of inhibitor-residue interaction to probe the binding modes of inhibitors YK9, YKJ and YKI to Hsp90 and identify the hot spot of the inhibitor-Hsp90 binding. The results suggest that the introductions of two groups G1 and G2 into YKJ and YKI strengthen the binding ability of YKJ and YKI to Hsp90 compared to YK9. PC analysis based MD trajectories prove that inhibitor bindings exert significant effects on the conformational changes, internal dynamics and motion modes of Hsp90, especially for the helix α2 and the loops L1 and L2. The calculations of residue-based free energy decomposition and scanning of the inhibitor-Hsp90 interaction suggest that six residues L107, G108, F138, Y139, W162 and F170 construct the common hot spot of the inhibitor-residue interactions. Moreover the substitutions of the groups G1 and G2 in YKJ and YKI lead to two additional hydrogen bonding interactions and multiple hydrophobic interactions for bindings of YKJ and YKI to Hsp90. This work is also expected to contribute theoretical hints for the design of potent inhibitors toward Hsp90.
热休克蛋白90(Hsp90)一直是抗肿瘤治疗潜在药物设计的一个有吸引力的靶点。当前的工作将分子动力学(MD)模拟、结合自由能计算、主成分(PC)分析与抑制剂-残基相互作用扫描相结合,以探究抑制剂YK9、YKJ和YKI与Hsp90的结合模式,并确定抑制剂-Hsp90结合的热点。结果表明,与YK9相比,在YKJ和YKI中引入两组G1和G2增强了YKJ和YKI与Hsp90的结合能力。基于PC分析的MD轨迹证明,抑制剂结合对Hsp90的构象变化、内部动力学和运动模式有显著影响,尤其是对螺旋α2以及环L1和L2。基于残基的自由能分解计算和抑制剂-Hsp90相互作用扫描表明,六个残基L107、G108、F138、Y139、W162和F170构成了抑制剂-残基相互作用的共同热点。此外,YKJ和YKI中G1和G2基团的取代导致YKJ和YKI与Hsp90结合时产生另外两个氢键相互作用和多个疏水相互作用。这项工作也有望为设计针对Hsp90的有效抑制剂提供理论线索。