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The Aβ40 and Aβ42 peptides self-assemble into separate homomolecular fibrils in binary mixtures but cross-react during primary nucleation.在二元混合物中,Aβ40和Aβ42肽会各自组装成不同的同分子原纤维,但在初级成核过程中会发生交叉反应。
Chem Sci. 2015 Jul 1;6(7):4215-4233. doi: 10.1039/c4sc02517b. Epub 2015 May 8.
2
Fibril structure of amyloid-β(1-42) by cryo-electron microscopy.通过冷冻电子显微镜观察β-淀粉样蛋白(1-42)的原纤维结构
Science. 2017 Oct 6;358(6359):116-119. doi: 10.1126/science.aao2825. Epub 2017 Sep 7.
3
Collective variables for the study of long-time kinetics from molecular trajectories: theory and methods.用于从分子轨迹研究长时间动力学的集体变量:理论与方法
Curr Opin Struct Biol. 2017 Apr;43:141-147. doi: 10.1016/j.sbi.2017.02.006. Epub 2017 Mar 17.
4
Exploring the aggregation free energy landscape of the amyloid-β protein (1-40).探索β-淀粉样蛋白(1-40)的聚集自由能景观。
Proc Natl Acad Sci U S A. 2016 Oct 18;113(42):11835-11840. doi: 10.1073/pnas.1612362113. Epub 2016 Oct 3.
5
Atomic-resolution structure of a disease-relevant Aβ(1-42) amyloid fibril.与疾病相关的Aβ(1-42)淀粉样纤维的原子分辨率结构。
Proc Natl Acad Sci U S A. 2016 Aug 23;113(34):E4976-84. doi: 10.1073/pnas.1600749113. Epub 2016 Jul 28.
6
Atomic Resolution Structure of Monomorphic Aβ42 Amyloid Fibrils.均相 Aβ42 淀粉样纤维的原子分辨率结构
J Am Chem Soc. 2016 Aug 3;138(30):9663-74. doi: 10.1021/jacs.6b05129. Epub 2016 Jul 14.
7
Distinct Morphologies for Amyloid Beta Protein Monomer: Aβ1-40, Aβ1-42, and Aβ1-40(D23N).淀粉样β蛋白单体的不同形态:Aβ1-40、Aβ1-42和Aβ1-40(D23N)
J Chem Theory Comput. 2011 Aug 9;7(8):2584-92. doi: 10.1021/ct1006967. Epub 2011 Jun 29.
8
Water Mediated Interactions and the Protein Folding Phase Diagram in the Temperature-Pressure Plane.温度-压力平面中的水介导相互作用与蛋白质折叠相图
J Phys Chem B. 2015 Aug 27;119(34):11416-27. doi: 10.1021/acs.jpcb.5b03828. Epub 2015 Jul 9.
9
Amyloid polymorphism: structural basis and neurobiological relevance.淀粉样蛋白多态性:结构基础与神经生物学关联
Neuron. 2015 May 6;86(3):632-45. doi: 10.1016/j.neuron.2015.03.017.
10
Aβ(1-42) fibril structure illuminates self-recognition and replication of amyloid in Alzheimer's disease.Aβ(1-42)纤维结构揭示了阿尔茨海默病中淀粉样蛋白的自我识别和复制。
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比较淀粉样β(1-42)和淀粉样β(1-40)的无聚集自由能景观。

Comparing the Aggregation Free Energy Landscapes of Amyloid Beta(1-42) and Amyloid Beta(1-40).

机构信息

Department of Chemistry, and Center for Theoretical Biological Physics, Rice University , Houston, Texas 77005, United States.

出版信息

J Am Chem Soc. 2017 Nov 22;139(46):16666-16676. doi: 10.1021/jacs.7b08089. Epub 2017 Nov 7.

DOI:10.1021/jacs.7b08089
PMID:29057654
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5805378/
Abstract

Using a predictive coarse-grained protein force field, we compute and compare the free energy landscapes and relative stabilities of amyloid-β protein (1-42) and amyloid-β protein (1-40) in their monomeric and oligomeric forms up to the octamer. At the same concentration, the aggregation free energy profile of Aβ42 is more downhill, with a computed solubility that is about 10 times smaller than that of Aβ40. At a concentration of 40 μM, the clear free energy barrier between the pre-fibrillar tetramer form and the fibrillar pentamer in the Aβ40 aggregation landscape disappears for Aβ42, suggesting that the Aβ42 tetramer has a more diverse structural range. To further compare the landscapes, we develop a cluster analysis based on the structural similarity between configurations and use it to construct an oligomerization map that captures the paths of easy interconversion between different but structurally similar states of oligomers for both species. A taxonomy of the oligomer species based on β-sheet stacking topologies is proposed. The comparison of the two oligomerization maps highlights several key differences in the landscapes that can be attributed to the two additional C-terminal residues that Aβ40 lacks. In general, the two terminal residues strongly stabilize the oligomeric structures for Aβ42 relative to Aβ40, and greatly facilitate the conversion from pre-fibrillar trimers to fibrillar tetramers.

摘要

利用预测性粗粒度蛋白质力场,我们计算并比较了单体和寡聚形式的淀粉样β蛋白(1-42)和淀粉样β蛋白(1-40)的自由能景观和相对稳定性,直至八聚体。在相同浓度下,Aβ42 的聚集自由能曲线更平缓,计算出的溶解度比 Aβ40 小约 10 倍。在 40 μM 的浓度下,Aβ40 聚集景观中前纤维四聚体形式和纤维五聚体之间的明显自由能屏障消失,表明 Aβ42 四聚体具有更多样化的结构范围。为了进一步比较景观,我们开发了一种基于构象之间结构相似性的聚类分析,并将其用于构建一个低聚体图谱,该图谱捕捉了两种物种的不同但结构相似的低聚体状态之间易于相互转换的路径。基于β-折叠堆积拓扑结构,提出了一种寡聚物物种的分类法。这两种低聚体图谱的比较突出了几个景观上的关键差异,这些差异可以归因于 Aβ40 缺少的两个额外的 C 末端残基。一般来说,与 Aβ40 相比,这两个末端残基强烈稳定了 Aβ42 的寡聚体结构,并极大地促进了由前纤维三聚体向纤维四聚体的转化。