Raman E Prabhu, Takeda Takako, Barsegov Valeri, Klimov Dmitri K
Department of Bioinformatics and Computational Biology, George Mason University, Manassas, VA 20110, USA.
J Mol Biol. 2007 Oct 26;373(3):785-800. doi: 10.1016/j.jmb.2007.08.034. Epub 2007 Aug 22.
Using the experimental structures of Abeta amyloid fibrils and all-atom molecular dynamics, we study the force-induced unbinding of Abeta peptides from the fibril. We show that the mechanical dissociation of Abeta peptides is highly anisotropic and proceeds via different pathways when force is applied in parallel or perpendicular direction with respect to the fibril axis. The threshold forces associated with lateral unbinding of Abeta peptides exceed those observed during the mechanical dissociation along the fibril axis. In addition, Abeta fibrils are found to be brittle in the lateral direction of unbinding and soft along the fibril axis. Lateral mechanical unbinding and the unbinding along the fibril axis load different types of fibril interactions. Lateral unbinding is primarily determined by the cooperative rupture of fibril backbone hydrogen bonds. The unbinding along the fibril axis largely depends on the interpeptide Lys-Asp electrostatic contacts and the hydrophobic interactions formed by the Abeta C terminal. Due to universality of the amyloid beta structure, the anisotropic mechanical dissociation observed for Abeta fibrils is likely to be applicable to other amyloid assemblies. The estimates of equilibrium forces required to dissociate Abeta peptide from the amyloid fibril suggest that these supramolecular structures are mechanically stronger than most protein domains.
利用β-淀粉样蛋白原纤维的实验结构和全原子分子动力学,我们研究了力诱导的β-淀粉样肽从原纤维上的解离。我们表明,β-淀粉样肽的机械解离具有高度各向异性,当力相对于原纤维轴沿平行或垂直方向施加时,通过不同的途径进行。与β-淀粉样肽横向解离相关的阈值力超过了沿原纤维轴机械解离过程中观察到的力。此外,发现β-淀粉样原纤维在横向解离方向上易碎,而沿原纤维轴方向则较软。横向机械解离和沿原纤维轴的解离加载不同类型的原纤维相互作用。横向解离主要由原纤维主链氢键的协同断裂决定。沿原纤维轴的解离很大程度上取决于肽间赖氨酸-天冬氨酸静电接触以及由β-淀粉样肽C末端形成的疏水相互作用。由于淀粉样β结构的普遍性,β-淀粉样原纤维观察到的各向异性机械解离可能适用于其他淀粉样聚集体。从淀粉样原纤维上解离β-淀粉样肽所需的平衡力估计表明,这些超分子结构在机械上比大多数蛋白质结构域更强。