...
首页> 外文期刊>Journal of Molecular Modeling >Can molecular dynamics simulations assist in design of specific inhibitors and imaging agents of amyloid aggregation? Structure, stability and free energy predictions for amyloid oligomers of VQIVYK, MVGGVV and LYQLEN
【24h】

Can molecular dynamics simulations assist in design of specific inhibitors and imaging agents of amyloid aggregation? Structure, stability and free energy predictions for amyloid oligomers of VQIVYK, MVGGVV and LYQLEN

机译:分子动力学模拟可以帮助设计淀粉样蛋白聚集的特定抑制剂和显像剂吗? VQIVYK,MVGGVV和LYQLEN的淀粉样蛋白低聚物的结构,稳定性和自由能预测

获取原文
获取原文并翻译 | 示例
           

摘要

The aggregation modes of hexapeptide fragments of Tau, Insulin and Aβ peptide (VQIVYK, MVGGVV and LYQLEN) were found from their microcrystalline structures that had been recently resolved by X-ray analysis. The atomic structures reveal a dry self-complementary interface between the neighboring β-sheet layers, termed “steric zipper”. In this study we perform several all-atom molecular dynamics simulations with explicit water to analyze stability of the crystalline fragments of 2-10 hexapeptides each and their analogs with single glycine replacement mutations to investigate the structural stability, aggregation behavior and thermodynamic of the amyloid oligomers. Upon comparing single and double layer models, our results reveal that additional strands contribute significantly to the structural stability of the peptide oligomers for double layer model, while in the case of single layer model the stability decreases (or remains the same in the case of LYQLEN). This is in agreement with the previous studies performed on different types of amyloid models. We also replaced the side-chains participating in the steric zipper interfaces with glycine. None of the mutants were structurally stable compared to the respective wild type model, except for mutants V2G and V6G in MVGGVV2 case. The exception can be explained by structural features of this particular polymorph. The double layer decamer and dodecamer aggregates of the wild type hexapeptides appear to be stable at 300K, which is confirmed by the conservation of high anti-parallel β-sheet content throughout the whole simulation time. Deletions of the side chains resulted in decline of secondary structure content compared to corresponding wild type indicating that the role of the replaced amino acid in stabilizing the structure. Detailed analysis of the binding energy reveals that stability of these peptide aggregates is determined mainly by the van der Waals and hydrophobic forces that can serve as quantitative measure of shape complementarities between the side chains. This observation implies that interactions among side chains forming the dehydrated steric zipper, rather than among those exposed to water, are the major structural determinant. The electrostatic repulsion destabilizes the studied double layer aggregates in two cases, while stabilizes the other two. Negative total binding free energy indicates that both wild type and mutants complex formation is favorable. However, the mutants complexation is less favorable than the wild type’s. The present study provides the atomic level understanding of the aggregation behavior and the driving force for the amyloid aggregates, and could be useful for rational design of amyloid inhibitors and amyloid-specific biomarkers for diagnostic purposes.
机译:Tau,胰岛素和Aβ肽(VQIVYK,MVGGVV和LYQLEN)的六肽片段的聚集模式是从最近通过X射线分析确定的微晶结构中发现的。原子结构揭示了相邻的β-折叠层之间的干燥自互补界面,称为“空间拉链”。在这项研究中,我们用清水进行了几个全原子分子动力学模拟,以分析2-10个六肽的晶体片段及其具有单个甘氨酸替代突变的类似物的稳定性,以研究淀粉样蛋白低聚物的结构稳定性,聚集行为和热力学。 。通过比较单层和双层模型,我们的结果表明,其他链对双层模型的肽寡聚体的结构稳定性有显着贡献,而在单层模型的情况下,稳定性降低(或在LYQLEN情况下保持不变) )。这与先前对不同类型的淀粉样蛋白模型进行的研究一致。我们还用甘氨酸替换了参与立体拉链界面的侧链。与相应的野生型模型相比,除了MVGGVV2病例中的突变体V2G和V6G以外,没有突变体在结构上是稳定的。可以通过该特定多晶型物的结构特征来解释例外。野生型六肽的双层十聚体和十二聚体聚集体似乎在300K处稳定,这可以通过在整个模拟时间内保持高的反平行β-折叠含量来证实。与相应的野生型相比,侧链的缺失导致二级结构含量的降低,表明取代的氨基酸在稳定结构中的作用。对结合能的详细分析表明,这些肽聚集体的稳定性主要由范德华力和疏水力决定,它们可作为侧链之间形状互补性的定量度量。该观察结果暗示形成脱水的空间拉链的侧链之间的相互作用,而不是暴露于水的侧链之间的相互作用是主要的结构决定因素。静电排斥在两种情况下使研究的双层聚集体不稳定,而在另两种情况下稳定。负总结合自由能表明野生型和突变体复合物的形成都是有利的。但是,突变体的复合作用不如野生型复杂。本研究提供了对聚集行为和淀粉状蛋白聚集体的驱动力的原子水平的理解,并且可用于合理设计用于诊断目的的淀粉状蛋白抑制剂和淀粉状蛋白特异性生物标记物。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号