Chowdhury Surid Mohammad, Hossain Md Nuruzzaman, Rafe Md Rajdoula
Department of Pharmacy, Southeast University, Dhaka, Bangladesh.
Department of Pharmacy, Jagannath University, Dhaka, Bangladesh.
Heliyon. 2020 Oct 1;6(9):e04978. doi: 10.1016/j.heliyon.2020.e04978. eCollection 2020 Sep.
5-fluorouracil (5-FU) has been shown to have suffered from resistance which demands a solution entailing the development of 5-FU analogues. Our study aims to design a number of analogues of 5-FU and evaluate their effectiveness against thymidylate synthase (TS) compared to parent 5-FU with an effort to obtain better hit(s). All the molecules were optimized by molecular mechanics method utilizing MM2 forcefield parameters. Molecular docking of these molecules against TS was performed to catch on the binding strength of these molecules, determination of binding energy & interaction types of each ligand-target complex as well as subsequent analysis. PRA10 showed highest binding affinity (-9.1 Kcal/mol). Although binding energy of PRA6 & PRA14 are slightly lower than PRA10, they can be of special interest since they interact with crucial amino acids for binding and exhibit substantial non-bonded interactions. Residue analysis revealed that Arg50A, Arg175B, Arg215A, Ser216A, Arg176B and Asn226A of TS active site were crucial for binding/interaction. The best scored drug candidates demonstrated considerable pharmacokinetic as well as druglike properties. The present study also revealed that PRA6, PRA10 and PRA14 can be potential anticancer drugs for further development.
5-氟尿嘧啶(5-FU)已显示出存在耐药性,这就需要开发5-FU类似物来解决。我们的研究旨在设计多种5-FU类似物,并与母体5-FU相比,评估它们对胸苷酸合成酶(TS)的有效性,以期获得更好的结果。所有分子均采用MM2力场参数通过分子力学方法进行优化。对这些分子与TS进行分子对接,以了解这些分子的结合强度,确定每个配体-靶点复合物的结合能和相互作用类型,并进行后续分析。PRA10显示出最高的结合亲和力(-9.1千卡/摩尔)。尽管PRA6和PRA14的结合能略低于PRA10,但它们可能具有特殊意义,因为它们与结合的关键氨基酸相互作用,并表现出大量的非键相互作用。残基分析表明,TS活性位点的Arg50A、Arg175B、Arg215A、Ser216A、Arg176B和Asn226A对结合/相互作用至关重要。得分最高的候选药物表现出相当可观的药代动力学以及类药性质。本研究还表明,PRA6、PRA10和PRA14可能是有待进一步开发的潜在抗癌药物。