Institute of Molecular Medicine, Pune 411 057, Maharashtra, India.
Eur J Med Chem. 2010 May;45(5):1854-67. doi: 10.1016/j.ejmech.2010.01.024. Epub 2010 Jan 20.
We have designed and synthesized both the quinoline and naphthalene based molecules influenced by the unique structural make-up of mefloquine and TMC207, respectively. These compounds were evaluated for their anti-mycobacterial activity against drug sensitive Mycobacterium tuberculosis H37Rv in vitro at single-dose concentration (6.25 microg/mL). The compounds 22, 23, 26 and 27 inhibited the growth of M. tuberculosis H37Rv 99%, 90%, 98% and 91% respectively. Minimum inhibitory concentration of compounds 22, 23, 26 and 27 was found to be 6.25 microg/mL. Our molecular modeling and docking studies of designed compounds showed hydrogen bonding with Glu-61, Tyr-64 and Asn-190 amino acid residues at the putative binding site of ATP synthase, these interactions were coherent as shown by Mefloquine and TMC207, where hydrogen bonding was found with Tyr-64 and Glu-61 respectively. SAR analysis indicates importance of hydroxyl group and nature of substituents on piperazinyl-phenyl ring was critical in dictating the biological activity of newly synthesized compounds.
我们设计并合成了受甲氟喹和 TMC207 独特结构影响的喹啉和萘基分子。这些化合物在单剂量浓度(6.25μg/mL)下评估了它们对敏感结核分枝杆菌 H37Rv 的抗分枝杆菌活性。化合物 22、23、26 和 27 分别抑制 M. tuberculosis H37Rv 的生长 99%、90%、98%和 91%。化合物 22、23、26 和 27 的最小抑菌浓度被发现为 6.25μg/mL。我们设计的化合物的分子建模和对接研究表明,它们与 ATP 合酶假定结合位点的 Glu-61、Tyr-64 和 Asn-190 氨基酸残基形成氢键,这些相互作用与 Mefloquine 和 TMC207 一致,其中 Tyr-64 和 Glu-61 分别发现氢键。SAR 分析表明,哌嗪基-苯基环上的羟基和取代基的性质对新合成化合物的生物活性至关重要。