Department of Biochemistry, University of Oxford, Oxford OX1 3QU, United Kingdom.
Biochemistry. 2010 May 4;49(17):3678-84. doi: 10.1021/bi1001807.
A 14-residue fragment from near the C-terminus of the enzyme acetylcholinesterase (AChE) is believed to have a neurotoxic/neurotrophic effect acting via an unknown pathway. While the peptide is alpha-helical in the full-length enzyme, the structure and association mechanism of the fragment are unknown. Using multiple molecular dynamics simulations, starting from a tetrameric complex of the association domain of AChE and systematically disassembled subsets that include the peptide fragment, we show that the fragment is incapable of retaining its helicity in solution. Extensive replica exchange Monte Carlo folding and unfolding simulations in implicit solvent with capped and uncapped termini failed to converge to any consistent cluster of structures, suggesting that the fragment remains largely unstructured in solution under the conditions considered. Furthermore, extended molecular dynamics simulations of two steric zipper models show that the peptide is likely to form a zipper with antiparallel sheets and that peptides with mutations known to prevent fibril formation likely do so by interfering with this packing. The results demonstrate how the local environment of a peptide can stabilize a particular conformation.
一种来自乙酰胆碱酯酶(AChE)接近 C 末端的 14 残基片段被认为具有通过未知途径发挥神经毒性/神经营养作用。虽然该肽在全长酶中呈α螺旋结构,但该片段的结构和缔合机制尚不清楚。通过使用多个分子动力学模拟,从 AChE 的缔合域的四聚体复合物开始,系统地逐步去除包括肽片段在内的子集,我们表明该片段在溶液中无法保留其螺旋性。在带有封顶和未封顶末端的隐式溶剂中进行的广泛的复制交换蒙特卡罗折叠和展开模拟未能收敛到任何一致的结构簇,这表明在考虑的条件下,该片段在溶液中仍然很大程度上没有结构。此外,两个位阻拉链模型的扩展分子动力学模拟表明,该肽可能形成具有反平行片的拉链,并且已知可防止纤维形成的突变肽可能通过干扰这种包装来实现。结果表明,肽的局部环境如何能够稳定特定构象。