Li Yan, Gao Weimin, Li Feng, Wang Jinghui, Zhang Jingxiao, Yang Yinfeng, Zhang Shuwei, Yang Ling
Key Laboratory of Industrial Ecology and Environmental Engineering (MOE), Dalian University of Technology, Dalian, 116024, Liaoning, China.
Mol Biosyst. 2013 Sep;9(9):2266-81. doi: 10.1039/c3mb70186g.
CDK2, which interacts with cyclin A and cyclin E, is an important member of the CDK family. Having been proved to be associated with many diseases for its vital role in cell cycle, CDK2 is a promising target of anti-cancer drugs dealing with cell cycle disorders. In the present work, a total of 111 pyrazolo[1,5-a]pyrimidines (PHTPPs) as CDK2/cyclin A inhibitors were studied to conduct three-dimensional quantitative structure-activity (3D-QSAR) analyses. The optimal comparative molecular similarity indices analysis (CoMSIA) model shows that Q(2) = 0.516, Rncv(2) = 0.912, Rpre(2) = 0.914, Rm(2) = 0.843, SEP = 0.812, SEE = 0.347 with 10 components using steric, hydrophobic and H-bond donor field descriptors, indicating its effective internal and external predictive capacity. The contour maps further indicate that (1) bulky substituents in R1 are beneficial while H-bond donor groups at this position are detrimental; (2) hydrophobic contributions in the R2 area are favorable; (3) large and hydrophilic groups are well tolerated at the R3 position (a close H-bond donor moiety is favorable while a distal H-bond donor moiety in this area is disfavored); (4) bulky and hydrophobic features in the R4 region are beneficial for the biological activities and (5) the 7-N-aryl substitution is crucial to boost the inhibitory activities of the PHTPP inhibitors. Finally, docking and MD simulations demostrate that PHTPP derivatives are stabilized in a 'flying bat' conformation mainly through the H-bond interactions and hydrophobic contacts. Comparative studies indicate that PHTPP derivatives fit well within the ATP binding cleft in CDK2, with the core heterocyclic ring overlapping significantly with the adenine group of ATP despite a small deflection. In comparison to numerous other inhibitors binding to the ATP pocket, PHTPP analogues follow the binding fashion of purine inhibitors of this kinase. It is anticipated that the binding mechanism and structural features of PHTPP inhibitors studied in the present work will benefit the discovery of more potent CDK2 inhibitors, and the valid pyrazolo[1,5-a]pyrimidine-7-N-yl inhibitors will soon emerge from the large number of screening programmes to enter in clinical studies.
细胞周期蛋白依赖性激酶2(CDK2)可与细胞周期蛋白A和细胞周期蛋白E相互作用,是CDK家族的重要成员。由于其在细胞周期中发挥着至关重要的作用,CDK2已被证明与多种疾病相关,是治疗细胞周期紊乱的抗癌药物的一个有前景的靶点。在本研究中,总共研究了111种作为CDK2/细胞周期蛋白A抑制剂的吡唑并[1,5-a]嘧啶(PHTPP),以进行三维定量构效关系(3D-QSAR)分析。最优的比较分子相似性指数分析(CoMSIA)模型显示,使用立体、疏水和氢键供体场描述符的10个成分的Q(2)=0.516,Rncv(2)=0.912,Rpre(2)=0.914,Rm(2)=0.843,SEP=0.812,SEE=0.347,表明其具有有效的内部和外部预测能力。等高线图进一步表明:(1)R1位的大体积取代基是有利的,而该位置的氢键供体基团是不利的;(2)R2区域的疏水作用是有利的;(3)R3位对大的亲水基团有较好的耐受性(靠近的氢键供体部分是有利的,而该区域远端的氢键供体部分是不利的);(4)R4区域的大体积和疏水特征对生物活性是有利的;(5)7-N-芳基取代对于提高PHTPP抑制剂的抑制活性至关重要。最后,对接和分子动力学模拟表明,PHTPP衍生物主要通过氢键相互作用和疏水接触稳定在“飞蝠”构象中。比较研究表明,PHTPP衍生物很好地契合在CDK2的ATP结合口袋中,尽管有小的偏差,但其核心杂环与ATP的腺嘌呤基团有显著重叠。与许多其他结合到ATP口袋的抑制剂相比,PHTPP类似物遵循该激酶嘌呤抑制剂的结合方式。预计本研究中所研究的PHTPP抑制剂的结合机制和结构特征将有助于发现更有效的CDK2抑制剂,并且有效的吡唑并[1,5-a]嘧啶-7-N-基抑制剂将很快从大量筛选项目中脱颖而出并进入临床研究。