Infectious Disease Biology, Institute of Life Sciences, Nalco Square, Bhubaneswar, 751023, India.
J Mol Model. 2010 May;16(5):1003-9. doi: 10.1007/s00894-009-0602-2. Epub 2009 Oct 29.
Aeromonas hydrophila has been implicated in extra-intestinal infection and diarrhoea in humans. Targetting unique effectors of bacterial pathogens is considered a powerful strategy for drug design against bacterial variations to drug resistance. The two-component bacterial system involving sensor histidine kinase (SHK) and its response regulators is considered a lucrative target for drug design. This is the first report describing a three-dimensional (3D) structure for SHK of A. hydrophila. The model was constructed by homology modelling using the X-ray structure of PleD--a response regulator--in conjunction with cdiGMP (PDB code 1W25) and HemAT sensor domain (PDB code 1OR4)--a globin coupled sensor. A combination of homology modelling methodology and molecular dynamics (MD) simulations was applied to obtain a reasonable structure to understand the dynamic behaviour of SHK. Homology modelling was performed using MODELLER9v2 software. The structure was relaxed to eliminate bad atomic contacts. The final model obtained by molecular mechanics and dynamics methods was assessed using PROCHECK and VERIFY 3D graph, which confirmed that the final refined model is reliable. Until complete biochemical and structural data of SHK are determined by experimental means, this model can serve as a valuable reference for characterising the protein and could be explored for drug targetting by design of suitable inhibitors.
嗜水气单胞菌已被牵连到人类的肠道外感染和腹泻。针对细菌病原体的独特效应子进行靶向治疗被认为是对抗细菌耐药性变异的药物设计的一种强有力策略。涉及传感器组氨酸激酶 (SHK) 和其反应调节剂的双组分细菌系统被认为是药物设计的一个有吸引力的目标。这是首次描述嗜水气单胞菌 SHK 的三维 (3D) 结构的报告。该模型是通过同源建模构建的,使用 PleD(一种反应调节剂)的 X 射线结构,结合 cdiGMP(PDB 代码 1W25)和 HemAT 传感器结构域(PDB 代码 1OR4)——一种与球蛋白偶联的传感器。同源建模方法和分子动力学 (MD) 模拟的结合被应用于获得一个合理的结构,以了解 SHK 的动态行为。同源建模使用 MODELLER9v2 软件进行。结构被松弛以消除不良原子接触。通过分子力学和动力学方法获得的最终模型使用 PROCHECK 和 VERIFY 3D 图形进行评估,这证实了最终的精炼模型是可靠的。在通过实验手段确定 SHK 的完整生化和结构数据之前,该模型可以作为表征蛋白质的有价值的参考,并可以通过设计合适的抑制剂来探索药物靶向。