Targeting the cyclin-binding groove site to inhibit the catalytic activity of CDK2/cyclin A complex using p27(KIP1)-derived peptidomimetic inhibitors.

Journal of Chemical Biology Pub Date : 2014-09-18 eCollection Date: 2015-01-01 DOI:10.1007/s12154-014-0124-y
Arumugasamy Karthiga, Sunil Kumar Tripathi, Ramasamy Shanmugam, Venkatesan Suryanarayanan, Sanjeev Kumar Singh
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引用次数: 11

Abstract

Functionally activated cyclin-dependent kinase 2 (CDK2)/cyclin A complex has been validated as an interesting therapeutic target to develop the efficient antineoplastic drug based on the cell cycle arrest. Cyclin A binds to CDK2 and activates the kinases as well as recruits the substrate and inhibitors using a hydrophobic cyclin-binding groove (CBG). Blocking the cyclin substrate recruitment on CBG is an alternative approach to override the specificity hurdle of the currently available ATP site targeting CDK2 inhibitors. Greater understanding of the interaction of CDK2/cyclin A complex with p27 (negative regulator) reveals that the Leu-Phe-Gly (LFG) motif region of p27 binds with the CBG site of cyclin A to arrest the malignant cell proliferation that induces apoptosis. In the present study, Replacement with Partial Ligand Alternatives through Computational Enrichment (REPLACE) drug design strategies have been applied to acquire LFG peptide-derived peptidomimetics library. The peptidomimetics function is equivalent with respect to substrate p27 protein fashion but does not act as an ATP antagonist. The combined approach of molecular docking, molecular dynamics (MD), and molecular electrostatic potential and ADME/T prediction were carried out to evaluate the peptidomimetics. Resultant interaction and electrostatic potential maps suggested that smaller substituent is desirable at the position of phenyl ring to interact with Trp217, Arg250, and Gln254 residues in the active site. The best docked poses were refined by the MD simulations which resulted in conformational changes. After equilibration, the structure of the peptidomimetic and receptor complex was stable. The results revealed that the various substrate protein-derived peptidomimetics could serve as perfect leads against CDK2 protein.

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利用p27(KIP1)衍生的拟肽抑制剂靶向细胞周期蛋白结合槽位点抑制CDK2/cyclin A复合物的催化活性。
功能激活的细胞周期蛋白依赖性激酶2 (CDK2)/细胞周期蛋白A复合物已被证实是开发基于细胞周期阻滞的有效抗肿瘤药物的一个有趣的治疗靶点。细胞周期蛋白A通过疏水细胞周期蛋白结合槽(CBG)与CDK2结合,激活激酶并招募底物和抑制剂。阻断细胞周期蛋白底物在CBG上的募集是一种替代方法,可以克服目前可用的靶向CDK2抑制剂的ATP位点的特异性障碍。对CDK2/cyclin A复合物与p27(负调节因子)相互作用的进一步了解表明,p27的Leu-Phe-Gly (LFG)基序区域与细胞周期蛋白A的CBG位点结合,阻止恶性细胞增殖,诱导细胞凋亡。本研究采用计算富集替代部分配体替代(REPLACE)药物设计策略获得LFG肽衍生的拟肽物文库。拟态肽的功能与底物p27蛋白相似,但不作为ATP拮抗剂。采用分子对接、分子动力学、分子静电势和ADME/T预测相结合的方法对拟肽物进行评价。由此产生的相互作用和静电势图表明,在苯环的位置需要较小的取代基来与活性位点的Trp217, Arg250和Gln254残基相互作用。通过MD模拟优化了最佳对接位姿,从而导致了构象的变化。平衡后,拟肽受体复合物结构稳定。结果表明,各种底物蛋白衍生的肽模拟物可以作为对抗CDK2蛋白的完美先导物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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