Physics Department, Johannes Gutenberg University, Mainz, Germany.
PLoS Comput Biol. 2013;9(1):e1002864. doi: 10.1371/journal.pcbi.1002864. Epub 2013 Jan 17.
Ankyrin repeat proteins are elastic materials that unfold and refold sequentially, repeat by repeat, under force. Herein we use atomistic molecular dynamics to compare the mechanical properties of the 7-ankyrin-repeat oncoprotein Gankyrin in isolation and in complex with its binding partner S6-C. We show that the bound S6-C greatly increases the resistance of Gankyrin to mechanical stress. The effect is specific to those repeats of Gankyrin directly in contact with S6-C, and the mechanical 'hot spots' of the interaction map to the same repeats as the thermodynamic hot spots. A consequence of stepwise nature of unfolding and the localized nature of ligand binding is that it impacts on all aspects of the protein's mechanical behavior, including the order of repeat unfolding, the diversity of unfolding pathways accessed, the nature of partially unfolded intermediates, the forces required and the work transferred to the system to unfold the whole protein and its parts. Stepwise unfolding thus provides the means to buffer repeat proteins and their binding partners from mechanical stress in the cell. Our results illustrate how ligand binding can control the mechanical response of proteins. The data also point to a cellular mechano-switching mechanism whereby binding between two partner macromolecules is regulated by mechanical stress.
锚蛋白重复蛋白是弹性材料,在力的作用下,通过重复单元依次展开和折叠。在此,我们使用原子分子动力学比较了孤立状态和与结合伴侣 S6-C 结合状态下的 7 个锚蛋白重复致癌蛋白 Gankyrin 的力学性能。结果表明,结合的 S6-C 大大提高了 Gankyrin 抵抗机械应力的能力。这种效应是特异性的,只针对与 S6-C 直接接触的 Gankyrin 重复序列,并且力学“热点”与热力学热点的重复序列相同。展开的逐步性质和配体结合的局部性质的结果是,它影响蛋白质力学行为的各个方面,包括重复展开的顺序、可访问的展开途径的多样性、部分展开中间产物的性质、展开整个蛋白质及其部分所需的力和转移到系统的功。因此,逐步展开为缓冲重复蛋白及其结合伴侣提供了抵抗细胞内机械应激的手段。我们的结果说明了配体结合如何控制蛋白质的力学响应。该数据还指出了一种细胞机械转换机制,其中两个伴侣大分子之间的结合受机械应力的调节。