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一种创新的双重抑制剂设计策略及其在人胸苷酸合成酶和二氢叶酸还原酶双重抑制中的应用。

An innovative strategy for dual inhibitor design and its application in dual inhibition of human thymidylate synthase and dihydrofolate reductase enzymes.

机构信息

Division of Applied Life Science (BK21 Program), Systems and Synthetic Agrobiotech Center (SSAC), Plant Molecular Biology and Biotechnology Research Center (PMBBRC), Research Institute of Natural Science(RINS), Gyeongsang National University (GNU), Jinju, Republic of Korea.

出版信息

PLoS One. 2013;8(4):e60470. doi: 10.1371/journal.pone.0060470. Epub 2013 Apr 5.

Abstract

Due to the diligence of inherent redundancy and robustness in many biological networks and pathways, multitarget inhibitors present a new prospect in the pharmaceutical industry for treatment of complex diseases. Nevertheless, to design multitarget inhibitors is concurrently a great challenge for medicinal chemists. We have developed a novel computational approach by integrating the affinity predictions from structure-based virtual screening with dual ligand-based pharmacophore to discover potential dual inhibitors of human Thymidylate synthase (hTS) and human dihydrofolate reductase (hDHFR). These are the key enzymes in folate metabolic pathway that is necessary for the biosynthesis of RNA, DNA, and protein. Their inhibition has found clinical utility as antitumor, antimicrobial, and antiprotozoal agents. A druglike database was utilized to perform dual-target docking studies. Hits identified through docking experiments were mapped over a dual pharmacophore which was developed from experimentally known dual inhibitors of hTS and hDHFR. Pharmacophore mapping procedure helped us in eliminating the compounds which do not possess basic chemical features necessary for dual inhibition. Finally, three structurally diverse hit compounds that showed key interactions at both active sites, mapped well upon the dual pharmacophore, and exhibited lowest binding energies were regarded as possible dual inhibitors of hTS and hDHFR. Furthermore, optimization studies were performed for final dual hit compound and eight optimized dual hits demonstrating excellent binding features at target systems were also regarded as possible dual inhibitors of hTS and hDHFR. In general, the strategy used in the current study could be a promising computational approach and may be generally applicable to other dual target drug designs.

摘要

由于许多生物网络和途径中固有的冗余性和鲁棒性,多靶抑制剂为治疗复杂疾病的制药行业带来了新的前景。然而,设计多靶抑制剂同时也是药物化学家面临的巨大挑战。我们开发了一种新的计算方法,将基于结构的虚拟筛选的亲和力预测与双配体基于药效团的方法相结合,用于发现人胸苷酸合成酶(hTS)和人二氢叶酸还原酶(hDHFR)的潜在双重抑制剂。这些酶是叶酸代谢途径中的关键酶,对于 RNA、DNA 和蛋白质的生物合成是必需的。它们的抑制作用已被发现作为抗肿瘤、抗菌和抗原生动物药物具有临床应用价值。我们使用类药性数据库进行双靶标对接研究。通过对接实验识别的命中化合物被映射到双药效团上,该药效团是基于 hTS 和 hDHFR 的实验已知双重抑制剂开发的。药效团映射过程有助于我们排除不具有双重抑制所需基本化学特征的化合物。最后,选择了三个结构不同的命中化合物,它们在两个活性部位都显示出关键相互作用,很好地映射到双药效团上,并显示出最低的结合能,被认为是 hTS 和 hDHFR 的潜在双重抑制剂。此外,还对最终的双重命中化合物进行了优化研究,八个表现出优异结合特征的优化双重命中化合物也被认为是 hTS 和 hDHFR 的潜在双重抑制剂。总的来说,本研究中使用的策略可能是一种有前途的计算方法,并且可能普遍适用于其他双重靶标药物设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c743/3618229/3793b9cc4351/pone.0060470.g001.jpg

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