Premnath Padmavathy Nandha, Liu Shu, Perkins Tracy, Abbott Jennifer, Anderson Erin, McInnes Campbell
Drug Discovery and Biomedical Sciences, South Carolina College of Pharmacy, University of South Carolina, Columbia, SC 29208, United States.
Drug Discovery and Biomedical Sciences, South Carolina College of Pharmacy, University of South Carolina, Columbia, SC 29208, United States.
Bioorg Med Chem. 2014 Jan 1;22(1):616-22. doi: 10.1016/j.bmc.2013.10.039. Epub 2013 Nov 7.
In order to develop non-ATP competitive CDK2/cyclin A inhibitors, the REPLACE strategy has been applied to generate fragment alternatives for the N-terminal tetrapeptide of the cyclin binding motif (HAKRRLIF) involved in substrate recruitment prior to phosphotransfer. The docking approach used for the prediction of small molecule mimics for peptide determinants was validated through reproduction of experimental binding modes of known inhibitors and provides useful information for evaluating binding to protein-protein interaction sites. Further to this, potential arginine isosteres predicted using the validated LigandFit docking method were ligated to the truncated C-terminal peptide, RLIF using solid phase synthesis and evaluated in a competitive binding assay. After testing, identified fragments were shown to represent not only appropriate mimics for a critical arginine residue but also to interact effectively with a minor hydrophobic pocket present in the binding groove. Further evaluation of binding modes was undertaken to optimize the potency of these compounds. Through further application of the REPLACE strategy in this study, peptide-small molecule hybrid CDK2 inhibitors were identified that are more drug-like and suitable for further optimization as anti-tumor therapeutics.
为了开发非ATP竞争性CDK2/细胞周期蛋白A抑制剂,REPLACE策略已被应用于生成参与磷酸转移前底物募集的细胞周期蛋白结合基序(HAKRRLIF)N端四肽的片段替代物。用于预测肽决定簇小分子模拟物的对接方法通过重现已知抑制剂的实验结合模式得到验证,并为评估与蛋白质-蛋白质相互作用位点的结合提供了有用信息。除此之外,使用经过验证的LigandFit对接方法预测的潜在精氨酸异构体通过固相合成连接到截短的C端肽RLIF上,并在竞争性结合试验中进行评估。经过测试,鉴定出的片段不仅显示为关键精氨酸残基的合适模拟物,而且还能与结合槽中存在的一个小疏水口袋有效相互作用。对结合模式进行了进一步评估,以优化这些化合物的效力。通过在本研究中进一步应用REPLACE策略,鉴定出了肽-小分子杂合CDK2抑制剂,它们更具药物特性,适合作为抗肿瘤治疗药物进行进一步优化。