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首页> 外文期刊>Biophysical Journal >Probing energetics of Abeta fibril elongation by molecular dynamics simulations.
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Probing energetics of Abeta fibril elongation by molecular dynamics simulations.

机译:通过分子动力学模拟探索Abeta原纤维伸长的能量学。

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Using replica exchange molecular dynamics simulations and an all-atom implicit solvent model, we probed the energetics of Abeta(10-40) fibril growth. The analysis of the interactions between incoming Abeta peptides and the fibril led us to two conclusions. First, considerable variations in fibril binding propensities are observed along the Abeta sequence. The peptides in the fibril and those binding to its edge interact primarily through their N-termini. Therefore, the mutations affecting the Abeta positions 10-23 are expected to have the largest impact on fibril elongation compared with those occurring in the C-terminus and turn. Second, we performed weak perturbations of the binding free energy landscape by scanning partial deletions of side-chain interactions at various Abeta sequence positions. The results imply that strong side-chain interactions--in particular, hydrophobic contacts--impede fibril growth by favoring disordered docking of incoming peptides. Therefore, fibril elongation may be promoted by moderate reduction of Abeta hydrophobicity. The comparison with available experimental data is presented.
机译:使用副本交换分子动力学模拟和全原子隐式溶剂模型,我们探讨了Abeta(10-40)原纤维生长的能量学。对进入的Abeta肽与原纤维之间相互作用的分析导致我们得出两个结论。首先,沿着Abeta序列观察到原纤维结合倾向的显着变化。原纤维中的肽和与其边缘结合的那些肽主要通过其N末端相互作用。因此,与在C末端和转弯处发生的突变相比,预期影响Abeta位置10-23的突变对原纤维伸长的影响最大。其次,我们通过扫描在各种Abeta序列位置的侧链相互作用的部分缺失,对结合自由能态势进行了微弱的扰动。结果表明强的侧链相互作用-特别是疏水性接触-通过促进进入肽的无序对接而阻碍了原纤维的生长。因此,可通过适度降低Abeta疏水性来促进原纤维伸长。提出了与可用实验数据的比较。

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