Department of Biotechnology, St. Xavier's College, 30 Park Street, Kolkata 700016, India.
High Pressure &Synchrotron Radiation Physics Division, Bhabha Atomic Research Centre, Trombay, Mumbai 400085, India.
Sci Rep. 2017 Feb 20;7:42812. doi: 10.1038/srep42812.
Molecular mechanisms of xenosiderophore and heme acquisitions using periplasmic binding protein (PBP) dependent ATP-binding cassette transporters to scavenge the essential nutrient iron are elusive yet in Vibrio cholerae. Our current study delineates the structures, dynamics and ligand binding properties of two Type III PBPs of V. cholerae, VcFhuD and VcHutB. Through crystal structures and fluorescence quenching studies we demonstrate unique features of VcFhuD to bind both hydroxamate and catecholate type xenosiderophores. Like E. coli FhuD, VcFhuD binds ferrichrome and ferri-desferal using conserved Tryptophans and R102. However, unlike EcFhuD, slightly basic ligand binding pocket of VcFhuD could favour ferri-enterobactin binding with plausible participation of R203, along with R102, like it happens in catecholate binding PBPs. Structural studies coupled with spectrophotometric and native PAGE analysis indicated parallel binding of two heme molecules to VcHutB in a pH dependent manner, while mutational analysis established the relative importance of Y65 and H164 in heme binding. MD simulation studies exhibited an unforeseen inter-lobe swinging motion in Type III PBPs, magnitude of which is inversely related to the packing of the linker helix with its neighboring helices. Small inter-lobe movement in VcFhuD or dramatic twisting in VcHutB is found to influence ligand binding.
利用周质结合蛋白 (PBP) 依赖的三磷酸腺苷结合盒转运蛋白获取外源性铁载体和血红素的分子机制在霍乱弧菌中仍难以捉摸。本研究描绘了霍乱弧菌两种 III 型 PBP(VcFhuD 和 VcHutB)的结构、动力学和配体结合特性。通过晶体结构和荧光猝灭研究,我们证明了 VcFhuD 独特的特征,可结合羟肟酸和儿茶酚型外源性铁载体。与大肠杆菌 FhuD 一样,VcFhuD 使用保守的色氨酸和 R102 结合铁载体和去铁铁载体。然而,与 EcFhuD 不同,VcFhuD 的略微碱性配体结合口袋可能有利于 ferri-enterobactin 的结合,可能涉及 R203,就像在儿茶酚结合 PBPs 中一样。结构研究与分光光度法和 nativePAGE 分析相结合表明,两个血红素分子以 pH 依赖的方式平行结合到 VcHutB 上,而突变分析确定了 Y65 和 H164 在血红素结合中的相对重要性。MD 模拟研究显示,III 型 PBP 中存在出人意料的叶间摆动运动,其幅度与连接螺旋与其相邻螺旋的包装成反比。VcFhuD 中的小叶间运动或 VcHutB 中的剧烈扭曲都被发现会影响配体结合。