Anguru Mohana Rao, Taduri Ashok Kumar, Bhoomireddy Rama Devi, Jojula Malathi, Gunda Shravan Kumar
Department of Chemistry, College of Engineering, Jawaharlal Nehru Technological University Hyderabad, Kukatpally, Hyderabad, 500 085, India.
Department of Microbiology, Sri Shivani College of Pharmacy, Warangal, 506002, India.
Chem Cent J. 2017 Jul 24;11(1):68. doi: 10.1186/s13065-017-0295-z.
Multi drug-resistant and mycobacterial infections are a major public health challenge, leading to high mortality and socioeconomic burdens through worldwide. Novel therapeutics are necessary to treat the drug resistant strains, since no new chemical entities are emerged in the last four decades for the treatment of TB.
A series of novel 2-heterostyrylbenzimidazole derivatives were synthesised by cyclisation of (3,4-diaminophenyl)(phenyl)methanone, cinnamic acid using glycerol in high yield. The molecular structures of target compounds (5a-5n) were confirmed by H and C NMR spectroscopy and mass spectrometry. Newly synthesized compounds were screened for anti-tubercular activity and the MIC was determined against Mycobacterium tuberculosis HRv by broth microdilution method using Lowenstein Jensen medium (LJ). These compounds docked into the active site of "Crystal structure of pantothenate synthetase in complex with 2-(2-(benzofuran-2-ylsulfonylcarbamoyl)-5-methoxy-1H-indol-1-yl)acetic acid" (PDB code, 3IVX). Auto dock 4.2 software was used for docking studies.
5d, 5e, 5f, 5g, 5i, and 5l show better activity and the most active inhibitor of tuberculosis 5f showed a promising inhibition of M. tuberculosis with MIC value of 16 μg/mL. The molecules functionalized with electron-donating groups (Cl, O, S, etc.) on different aromatic aldehydes (5a-5n) were found to be more active in inhibiting M. tuberculosis.
On the basis of docking studies, 5f has shown good affinity for the enzyme. Comparison was made with the binding energies of the standard drugs amoxicillin (-34.28 kcal/mol) and ciprofloxacin (-28.20 kcal/mol). Among all the designed compounds, the compound 5f shows highest binding energy with two amino acid interactions Lys160, Val187 (-9.80 kcal/mol).
多重耐药和分枝杆菌感染是一项重大的公共卫生挑战,在全球范围内导致高死亡率和社会经济负担。由于在过去四十年中没有出现用于治疗结核病的新化学实体,因此需要新型疗法来治疗耐药菌株。
通过(3,4-二氨基苯基)(苯基)甲酮、肉桂酸与甘油环化反应,高产率合成了一系列新型2-杂苯乙烯基苯并咪唑衍生物。目标化合物(5a-5n)的分子结构通过氢谱、碳谱和质谱得到确认。使用罗氏培养基(LJ)通过肉汤微量稀释法对新合成的化合物进行抗结核活性筛选,并测定其对结核分枝杆菌H37Rv的最低抑菌浓度(MIC)。这些化合物对接至“泛酸合成酶与2-(2-(苯并呋喃-2-基磺酰氨基甲酰基)-5-甲氧基-1H-吲哚-1-基)乙酸复合物的晶体结构”(PDB编号,3IVX)的活性位点。使用Auto dock 4.2软件进行对接研究。
5d、5e、5f、5g、5i和5l表现出较好的活性,最具活性的结核病抑制剂5f对结核分枝杆菌显示出有前景的抑制作用,MIC值为16μg/mL。发现在不同芳香醛(5a-5n)上用供电子基团(Cl、O、S等)官能化的分子在抑制结核分枝杆菌方面更具活性。
基于对接研究,5f对该酶显示出良好的亲和力。与标准药物阿莫西林(-34.28千卡/摩尔)和环丙沙星(-28.20千卡/摩尔)的结合能进行了比较。在所有设计的化合物中,化合物5f与两个氨基酸Lys160、Val187相互作用显示出最高的结合能(-9.80千卡/摩尔)。