Raffa Duilio F, Rauk Arvi
Department of Chemistry, University of Calgary, 2500 University Drive NW, Calgary, Alberta, Canada T2N 1N4.
J Phys Chem B. 2007 Apr 12;111(14):3789-99. doi: 10.1021/jp0689621. Epub 2007 Mar 22.
The Abeta1-42 monomer structure was assessed with a 790 ns molecular dynamics (MD) simulation, and the results were compared with the NMR experiment on Abeta10-35 and Abeta1-40. Previous theoretical work in a model of the His13-His14 region of Abeta defined the possible Cu(II) binding geometries at this site (Raffa et al. J. Biol. Inorg. Chem. 2005, 10, 887-902). MD simulations totalling almost 2 micros were also carried out on Cu(II)/Abeta1-42 systems, using the ab initio structures as templates for the copper binding site. This work finds that the copper-free Abeta1-42 system may stabilize after approximately 350 ns into a collapsed coil conformation, and we find good agreement with some, but not all, of the structural features determined experimentally for the Abeta10-35 and Abeta1-40 peptides. The results of the Cu(II)/Abeta1-42 systems are compared to the Cu(II)-free Abeta1-42 simulation.
使用790纳秒的分子动力学(MD)模拟评估了Aβ1-42单体结构,并将结果与Aβ10-35和Aβ1-40的核磁共振实验进行了比较。先前在Aβ的His13-His14区域模型中的理论工作确定了该位点可能的Cu(II)结合几何结构(Raffa等人,《生物无机化学杂志》,2005年,10卷,887-902页)。还使用从头算结构作为铜结合位点的模板,对Cu(II)/Aβ1-42系统进行了总计近2微秒的MD模拟。这项工作发现,无铜的Aβ1-42系统可能在大约350纳秒后稳定为塌陷的螺旋构象,并且我们发现与通过实验确定的Aβ10-35和Aβ1-40肽的一些(但不是全部)结构特征具有良好的一致性。将Cu(II)/Aβ1-42系统的结果与无Cu(II)的Aβ1-42模拟进行了比较。