从已知活性作为生存素抑制剂的支架中新设计的化合物:从基于片段的药物设计角度的计算分析。

In Silico Pharmacology Pub Date : 2021-07-28 eCollection Date: 2021-01-01 DOI:10.1007/s40203-021-00108-8
Olusola Olalekan Elekofehinti, Opeyemi Iwaloye, Femi Olawale, Prosper Obed Chukwuemeka, Ibukun Mary Folorunso
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引用次数: 7

摘要

Survivin是一种抑制细胞凋亡的蛋白,与不同形式的癌症有关。就目前而言,尽管在临床试验中有许多有前景的化合物,但还没有批准的药物用于抑制癌细胞中的生存素。本研究从活性survivin抑制剂的片段中设计了一组新的化合物,以增强它们与survivin在BIR结构域的结合。由8种有效的survivin抑制剂组成的305个片段被重建成一组新的化合物。通过广泛的对接分析,采用R基枚举法和生物等异体置换法对化合物进行了优化。优化后的化合物通过有效的药效团模型进行过滤,以揭示它们与药效团位点的对齐程度。对排列良好的化合物进行分子对接,得到得分最高的化合物;并根据结合亲和力(刚性和柔性对接)、预测pIC50和分子间相互作用,将这些化合物与作为片段设计模板的8种抑制剂进行比较。计算了新设计化合物的电子行为(全局描述子、HOMO/LUMO、分子静电势和福井函数),以研究它们的反应性和容易受到中性/亲电攻击的原子位置。与8种活性抑制剂相比,9种新设计的化合物在BIR结构域具有更好的刚性和柔性对接得分、自由结合能和与survivin分子间相互作用。基于前沿分子轨道,发现OPE-3是活性最强且稳定性较差的化合物(0.13194 eV),其次是OPE-4和OPE-9。整体描述参数显示,OPE-3的柔软度值最高(7.5245 eV),而OPE-8的硬度值最高(0.08486 eV)。经过验证的QSAR模型还显示,在所有抑制剂中,OPE-3、OPE-7和OPE-8具有最显著的生物活性。因此,这项研究为设计能够调节survivin活性的化合物提供了新的见解。补充信息:在线版本包含补充资料,提供地址为10.1007/s40203-021-00108-8。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Newly designed compounds from scaffolds of known actives as inhibitors of survivin: computational analysis from the perspective of fragment-based drug design.

Survivin is an apoptosis suppressing protein linked to different forms of cancer. As it stands, there are no approved drugs for the inhibition of survivin in cancer cells despite a number of promising compounds in clinical trials. This study designed a new set of compounds from fragments of active survivin inhibitors to potentiate their binding with survivin at BIR domain. Three hundred and five (305) fragments made from eight potent inhibitors of survivin were reconstructed to form a new set of compounds. The compounds were optimized using R group enumeration and bioisostere replacement after extensive docking analysis. The optimised compounds were filtered by a validated pharmacophore model to reveal how well they are aligned to the pharmacophore sites. Molecular docking of the well aligned compounds revealed the top-scoring compounds; and these compounds were compared with the eight inhibitors used as template for fragment-based design on the basis of binding affinity (rigid and flexible docking), predicted pIC50 and intermolecular interactions. The electronic behaviours (global descriptors, HOMO/LUMO, molecular electrostatic potential and Fukui functions) of newly designed compounds were calculated to investigate their reactivity and atomic sites prone to neutrophilic/electrophilic attack. The nine newly designed compounds had better rigid and flexible docking scores, free energy of binding and intermolecular interactions with survivin at BIR domain than the eight active inhibitors. Based on frontier molecular orbitals, OPE-3 was found to be the most reactive and less stable compound (0.13194 eV), followed by OPE-4 and OPE-9. The global descriptive parameters showed that OPE-3 had highest softness value (7.5245 eV) while OPE-8 recorded the maximum hardness value (0.08486 eV). The well-validated QSAR model also showed that OPE-3, OPE-7 and OPE-8 had the most significant bioactivity of all the inhibitors. This study thus provides new insight into the design of compounds capable of modulating the activity of survivin.

Supplementary information: The online version contains supplementary material available at 10.1007/s40203-021-00108-8.

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