Bossis Fabrizio, Palese Luigi L
SMBNOS - University of Bari "Aldo Moro", Italy.
Biochim Biophys Acta. 2013 Dec;1834(12):2486-93. doi: 10.1016/j.bbapap.2013.08.010. Epub 2013 Sep 6.
Development of extracellular plaques characteristic of Alzheimer's disease is related to aggregation of amyloid peptides. The Aβ-42 peptide is the most aggregation prone species, and some missense mutant forms increase this aggregation ability. Due to its poor solubility as monomer in aqueous solutions, Aβ-42 conformational transitions in water have been largely investigated by molecular dynamics. Here we report an all-atom molecular dynamics analysis of the Aβ-42 peptide in aqueous environment using as starting conformation a structure obtained in an isotropic, low-polarity medium, representing a plausible model for the membrane-bound species. While previous studies commonly show that Aβ-42 is largely unstructured in aqueous solution, here we report that this peptide can adopt partially folded structures. Importance of ionic strength has been also investigated, showing that at physiological ionic strength condition a loop stabilizing electrostatic interaction involving Lys28 builds up. In addition, besides stable α-helix structures, we observe the appearance of 310 helix, similar to what was reported experimentally for the Aβ-40 species. The effect of E22Q (Dutch) mutation in high ionic strength condition has been explored. We show that this mutation has a dramatic impact on the Aβ-42 structure. Instead of a partially folded, but extended, conformation obtained with the wild type, the E22Q assumes a two-helix collapsed one due to the clustering of hydrophobic residues.
阿尔茨海默病特有的细胞外斑块的形成与淀粉样肽的聚集有关。Aβ-42肽是最易聚集的物种,一些错义突变形式会增强这种聚集能力。由于其作为单体在水溶液中的溶解度较差,Aβ-42在水中的构象转变已通过分子动力学进行了大量研究。在此,我们报告了在水环境中对Aβ-42肽进行的全原子分子动力学分析,使用在各向同性、低极性介质中获得的结构作为起始构象,该结构代表了膜结合物种的一个合理模型。虽然先前的研究通常表明Aβ-42在水溶液中基本无结构,但在此我们报告该肽可以采用部分折叠结构。还研究了离子强度的重要性,结果表明在生理离子强度条件下,涉及赖氨酸28的环稳定静电相互作用会形成。此外,除了稳定的α-螺旋结构外,我们还观察到310螺旋的出现,这与实验报道的Aβ-40物种情况类似。我们还探讨了高离子强度条件下E22Q(荷兰型)突变的影响。我们发现这种突变对Aβ-42结构有显著影响。与野生型获得的部分折叠但伸展的构象不同,E22Q由于疏水残基的聚集而呈现出一种双螺旋折叠构象。