Yang Ami Y-C, Mancera Ricardo L
Department of Pharmacology, University of Cambridge, Cambridge, CB2 1PD, UK.
J Comput Aided Mol Des. 2008 Nov;22(11):799-814. doi: 10.1007/s10822-008-9215-6. Epub 2008 Apr 15.
The periplasmic lysine-, arginine-, ornithine-binding protein (LAOBP) traps its ligands by a large hinge bending movement between two globular domains. The overall geometry of the binding site remains largely unchanged between the open (unliganded) and closed (liganded) forms, with only a small number of residues exhibiting limited movement of their side chains. However, in the case of the ornithine-bound structure, the backbone peptide bond between Asp11 and Thr12 undergoes a large rotation. Molecular dynamics simulations have been used to investigate the origin and mechanism of this backbone movement. Simulations allowing flexibility of a limited region and of the whole binding site, with and without bound ligands, suggest that this conformational change is induced by the binding of ornithine, leading to the stabilisation of an energetically favourable alternative conformation.
周质赖氨酸、精氨酸、鸟氨酸结合蛋白(LAOBP)通过两个球状结构域之间的大幅度铰链弯曲运动捕获其配体。在开放(未结合配体)和闭合(结合配体)形式之间,结合位点的整体几何形状基本保持不变,只有少数残基的侧链表现出有限的移动。然而,在鸟氨酸结合结构的情况下,Asp11和Thr12之间的主链肽键发生了大幅度旋转。分子动力学模拟已被用于研究这种主链运动的起源和机制。对有限区域和整个结合位点进行有或无结合配体时的灵活性模拟表明,这种构象变化是由鸟氨酸的结合诱导的,导致了一种能量有利的替代构象的稳定。