Hylsová Michaela, Carbain Benoit, Fanfrlík Jindřich, Musilová Lenka, Haldar Susanta, Köprülüoğlu Cemal, Ajani Haresh, Brahmkshatriya Pathik S, Jorda Radek, Kryštof Vladimír, Hobza Pavel, Echalier Aude, Paruch Kamil, Lepšík Martin
Department of Chemistry, CZ Openscreen, Masaryk University, Kamenice 5, 625 00 Brno, Czech Republic.
Department of Chemistry, CZ Openscreen, Masaryk University, Kamenice 5, 625 00 Brno, Czech Republic; International Clinical Research Center, St. Anne's University Hospital Brno, Pekařská 53, 656 91 Brno, Czech Republic.
Eur J Med Chem. 2017 Jan 27;126:1118-1128. doi: 10.1016/j.ejmech.2016.12.023. Epub 2016 Dec 11.
We present comprehensive testing of solvent representation in quantum mechanics (QM)-based scoring of protein-ligand affinities. To this aim, we prepared 21 new inhibitors of cyclin-dependent kinase 2 (CDK2) with the pyrazolo[1,5-a]pyrimidine core, whose activities spanned three orders of magnitude. The crystal structure of a potent inhibitor bound to the active CDK2/cyclin A complex revealed that the biphenyl substituent at position 5 of the pyrazolo[1,5-a]pyrimidine scaffold was located in a previously unexplored pocket and that six water molecules resided in the active site. Using molecular dynamics, protein-ligand interactions and active-site water H-bond networks as well as thermodynamics were probed. Thereafter, all the inhibitors were scored by the QM approach utilizing the COSMO implicit solvent model. Such a standard treatment failed to produce a correlation with the experiment (R = 0.49). However, the addition of the active-site waters resulted in significant improvement (R = 0.68). The activities of the compounds could thus be interpreted by taking into account their specific noncovalent interactions with CDK2 and the active-site waters. In summary, using a combination of several experimental and theoretical approaches we demonstrate that the inclusion of explicit solvent effects enhance QM/COSMO scoring to produce a reliable structure-activity relationship with physical insights. More generally, this approach is envisioned to contribute to increased accuracy of the computational design of novel inhibitors.
我们展示了在基于量子力学(QM)的蛋白质-配体亲和力评分中对溶剂表示的全面测试。为此,我们制备了21种以吡唑并[1,5-a]嘧啶为核心的细胞周期蛋白依赖性激酶2(CDK2)新抑制剂,其活性跨度达三个数量级。一种强效抑制剂与活性CDK2/细胞周期蛋白A复合物结合的晶体结构表明,吡唑并[1,5-a]嘧啶支架5位的联苯取代基位于一个先前未被探索的口袋中,且活性位点中有六个水分子。利用分子动力学,研究了蛋白质-配体相互作用、活性位点水氢键网络以及热力学。此后,所有抑制剂都采用利用COSMO隐式溶剂模型的QM方法进行评分。这种标准处理未能产生与实验的相关性(R = 0.49)。然而,添加活性位点水后有显著改善(R = 0.68)。因此,通过考虑化合物与CDK2以及活性位点水的特定非共价相互作用,可以解释这些化合物的活性。总之,通过结合多种实验和理论方法,我们证明纳入显式溶剂效应可增强QM/COSMO评分,以产生具有物理见解的可靠构效关系。更一般地说,预计这种方法将有助于提高新型抑制剂计算设计的准确性。