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有水相锌离子结合的淀粉样蛋白β(1-40)和锌离子结合的淀粉样蛋白β(1-42)的结构和自由能景观及其动力学。

Structures and free energy landscapes of aqueous zinc(II)-bound amyloid-β(1-40) and zinc(II)-bound amyloid-β(1-42) with dynamics.

机构信息

Department of Chemistry, The University of Texas at San Antonio, San Antonio, TX 78249, USA.

出版信息

J Biol Inorg Chem. 2012 Aug;17(6):927-38. doi: 10.1007/s00775-012-0909-9. Epub 2012 Jun 7.

Abstract

Binding of divalent metal ions with intrinsically disordered fibrillogenic proteins, such as amyloid-β (Aβ), influences the aggregation process and the severity of neurodegenerative diseases. The Aβ monomers and oligomers are the building blocks of the aggregates. In this work, we report the structures and free energy landscapes of the monomeric zinc(II)-bound Aβ40 (Zn:Aβ40) and zinc(II)-bound Aβ42 (Zn:Aβ42) intrinsically disordered fibrillogenic metallopeptides in an aqueous solution by utilizing an approach that employs first principles calculations and parallel tempering molecular dynamics simulations. The structural and thermodynamic properties, including the secondary and tertiary structures and conformational Gibbs free energies of these intrinsically disordered metallopeptide alloforms, are presented. The results show distinct differing characteristics for these metallopeptides. For example, prominent β-sheet formation in the N-terminal region (Asp1, Arg5, and Tyr10) of Zn:Aβ40 is significantly decreased or lacking in Zn:Aβ42. Our findings indicate that blocking multiple reactive residues forming abundant β-sheet structure located in the central hydrophobic core and C-terminal regions of Zn:Aβ42 via antibodies or small organic molecules might help to reduce the aggregation of Zn(II)-bound Aβ42. Furthermore, we find that helix formation increases but β-sheet formation decreases in the C-terminal region upon Zn(II) binding to Aβ. This depressed β-sheet formation in the C-terminal region (Gly33-Gly38) in monomeric Zn:Aβ42 might be linked to the formation of amorphous instead of fibrillar aggregates of Zn:Aβ42.

摘要

二价金属离子与无规卷曲的纤维状蛋白(如淀粉样β(Aβ))的结合会影响聚集过程和神经退行性疾病的严重程度。Aβ单体和寡聚体是聚集物的构建块。在这项工作中,我们报告了单体锌(II)结合的 Aβ40(Zn:Aβ40)和锌(II)结合的 Aβ42(Zn:Aβ42)无规卷曲纤维状金属肽在水溶液中的结构和自由能景观,方法是利用第一性原理计算和并行温度分子动力学模拟。提出了这些无规卷曲金属肽同种型的结构和热力学性质,包括二级和三级结构以及构象吉布斯自由能。结果表明,这些金属肽具有明显不同的特征。例如,Zn:Aβ40 的 N 端区域(Asp1、Arg5 和 Tyr10)中明显的β-折叠形成显著减少或在 Zn:Aβ42 中缺失。我们的研究结果表明,通过抗体或小分子阻断位于 Zn:Aβ42 中心疏水区和 C 端区域的多个形成丰富β-折叠结构的反应性残基,可能有助于减少 Zn(II)结合的 Aβ42 的聚集。此外,我们发现 Zn(II)与 Aβ结合后,C 端区域的螺旋形成增加,β-折叠形成减少。单体 Zn:Aβ42 中 C 端区域(Gly33-Gly38)的这种β-折叠形成减少可能与 Zn:Aβ42 形成无定形而不是纤维状聚集物有关。

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