Insilico studies of 2-methylheptyl isonicotinate produced by Streptomyces sps. 201 against dihydrodipicolinate synthase enzyme of Mycobacterium tuberculosis

S. P. Singh, R. L. Bezbaruah, T. Bora
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引用次数: 5

Abstract

Tuberculosis is thought to have infected one-third of the world’s population and antibiotic resistance is a growing problem in multi-drug-resistant tuberculosis which is caused by Mycobacterium tuberculosis (MTB). It has been reported that Mycobacterial cell walls are characterized by high DAP (diaminopimelic acid) content—an intermediate of the (S)-lysine biosynthetic pathway. Hence, the Lysine/DAP biosynthetic pathway is a promising target because of its role in cell wall and amino acid biosynthesis. In this study we performed a molecular docking analysis of a novel antibacterial isolated from Streptomyces sps. 201 against dihydrodipicolinate synthase (DHDPS) enzyme of Mycobacterium tuberculosis. The docking studies suggest that the novel molecule binds at active site LYS 171 forming a cleft and at other potential ligand binding site exhibiting all the major interactions such as hydrogen bonding, hydrophobic interaction and electrostatic interaction with (THR55, TYR143, ARG148, LYS171, VAL257 and GLY256) residues.
链霉菌合成异烟酸2-甲基庚酯的硅化研究。201抗结核分枝杆菌二氢二吡啶酸合酶
结核病被认为已感染了世界三分之一的人口,抗生素耐药性是由结核分枝杆菌(MTB)引起的耐多药结核病日益严重的问题。据报道,分枝杆菌细胞壁的特点是高DAP(二氨基苯甲酸)含量- (S)-赖氨酸生物合成途径的中间体。因此,赖氨酸/DAP生物合成途径因其在细胞壁和氨基酸生物合成中的作用而成为一个有希望的靶点。本研究对从链霉菌中分离的一种新型抗菌药物进行了分子对接分析。201抗结核分枝杆菌二氢二吡啶酸合酶(DHDPS)酶。对接研究表明,新分子与活性位点LYS171结合形成间隙,并与其他潜在配体结合位点(THR55, TYR143, ARG148, LYS171, VAL257和GLY256)残基发生氢键、疏水相互作用和静电相互作用。
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