从嘧啶衍生物中鉴定潜在的cdk8抑制剂

Pramod Baburao Patil, Subhash Trimbakrao Kumbhar
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摘要

嘧啶是天然存在于核酸组分中的六元杂环支架,是合成重要药用化合物的有希望的先导物。具有丝氨酸/苏氨酸催化核心的细胞周期蛋白依赖性激酶(CDKs)是癌症治疗的重要药物靶点,调控亚基的结合控制着它们。在本研究中,利用分子对接技术筛选了一系列虚拟设计的嘧啶衍生物,以对抗细胞周期蛋白依赖性激酶-8 (CDK8)作为靶蛋白。用密度泛函理论计算了具有良好结合亲和力的化合物的轨道能量。通过模拟最佳对接化合物与CDK8的分子动力学,估计迁移率对相互作用的影响。分子对接提供了关于设计的化合物与靶向CSK8结构的结合能力的见解。结果表明,对接的化合物与CDK8具有良好的相互作用,其中PB129的负结合亲和力最高,为-12.4 kcal/mol,并形成两个氢键。模拟研究结果表明,CDK-8与PB129配合物结合紧密,具有恒定的氢接触。此外,密度泛函理论表明,PB129具有较强的轨道能,该化合物与蛋白质结构的电子相互作用紧密。所研究的化合物通过与CDK-8 (PDB 6T41)紧密结合,在对接研究中表现出良好的效果。化合物PB129在模拟运行中得到了稳定的证实,具有良好的轨道能。化合物PB129可能作为抗CDK8的先导物。
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Identification of potential CDK 8 inhibitor from pyrimidine derivatives via In-Silico approach
Pyrimidinesare six-membered heterocyclic scaffold present naturally in nucleic acid components and are promising leads for the synthesis of medicinally important compounds. Cyclin-dependent kinases (CDKs) with a serine/threonine catalytic core are important druggable targets for cancer therapy and the binding of regulatory subunits controls them. In the present study series of virtually designed pyrimidine derivatives were screened using molecular docking techniques against the cyclin-dependent kinase-8 (CDK8) as a targeted protein. The density functional theory calculation of compounds having good binding affinity was done to estimate the orbital energy. The molecular dynamics simulation of the best-docked compound with the CDK8 was simulated to estimate the effect of mobility on the interactions.Themolecular docking provided insights regarding the binding ability of the designed compounds with the targeted CSK8 structure. As a result, the docked compounds exerted good interactions with the CDK8, and the compound PB129 showed the highest negative binding affinity of -12.4 kcal/mol with the formation of two hydrogen bonds. The results of the simulation study indicated that the complex of CDK-8 and PB129 hasa tight binding with constant hydrogen contacts. Moreover, the density functional theory indicated that PB129 has strong orbital energy and this compound will show tight interactions by either donating or accepting the electron with protein structure. Studied compounds showed good results for the docking study by exerting tight binding with the CDK-8 (PDB 6T41). Compound PB129 showed stable confirmation over the simulation run and has good orbital energies. Compound PB129 may act as a lead against the CDK8.
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