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本文引用的文献

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Structure-neurotoxicity relationships of amyloid beta-protein oligomers.淀粉样β蛋白寡聚体的结构与神经毒性关系
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Binding mode of Thioflavin T and other molecular probes in the context of amyloid fibrils-current status.硫黄素T及其他分子探针在淀粉样纤维环境中的结合模式——现状
J Chem Biol. 2010 Mar;3(1):1-18. doi: 10.1007/s12154-009-0027-5. Epub 2009 Aug 20.
3
Influence of residue 22 on the folding, aggregation profile, and toxicity of the Alzheimer's amyloid beta peptide.22位残基对阿尔茨海默病淀粉样β肽的折叠、聚集情况及毒性的影响。
Biophys J. 2009 Jul 8;97(1):277-85. doi: 10.1016/j.bpj.2009.04.017.
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Amino acid position-specific contributions to amyloid beta-protein oligomerization.氨基酸位置对淀粉样β蛋白寡聚化的特异性贡献。
J Biol Chem. 2009 Aug 28;284(35):23580-91. doi: 10.1074/jbc.M109.038133. Epub 2009 Jun 30.
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The E693Delta mutation in amyloid precursor protein increases intracellular accumulation of amyloid beta oligomers and causes endoplasmic reticulum stress-induced apoptosis in cultured cells.淀粉样前体蛋白中的E693Delta突变增加了淀粉样β寡聚体的细胞内积累,并在培养细胞中引起内质网应激诱导的细胞凋亡。
Am J Pathol. 2009 Mar;174(3):957-69. doi: 10.2353/ajpath.2009.080480. Epub 2009 Jan 22.
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Effects of the Arctic (E22-->G) mutation on amyloid beta-protein folding: discrete molecular dynamics study.北极(E22-->G)突变对淀粉样β蛋白折叠的影响:离散分子动力学研究。
J Am Chem Soc. 2008 Dec 24;130(51):17413-22. doi: 10.1021/ja804984h.
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Amyloid beta-protein assembly and Alzheimer disease.淀粉样β蛋白组装与阿尔茨海默病。
J Biol Chem. 2009 Feb 20;284(8):4749-53. doi: 10.1074/jbc.R800036200. Epub 2008 Oct 9.
8
Amyloid beta-protein monomer folding: free-energy surfaces reveal alloform-specific differences.淀粉样β蛋白单体折叠:自由能表面揭示了异构体特异性差异。
J Mol Biol. 2008 Dec 12;384(2):450-64. doi: 10.1016/j.jmb.2008.09.039. Epub 2008 Sep 24.
9
Amyloid-beta E22Delta variant induces synaptic alteration in mouse hippocampal slices.淀粉样蛋白β E22Delta变体诱导小鼠海马切片中的突触改变。
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10
A new amyloid beta variant favoring oligomerization in Alzheimer's-type dementia.一种在阿尔茨海默病型痴呆中倾向于寡聚化的新型β淀粉样蛋白变体。
Ann Neurol. 2008 Mar;63(3):377-87. doi: 10.1002/ana.21321.

ΔE22(大阪)家族性阿尔茨海默病相关淀粉样 β 蛋白的结构动力学。

Structural dynamics of the ΔE22 (Osaka) familial Alzheimer's disease-linked amyloid β-protein.

机构信息

Department of Neurology, David Geffen School of Medicine, University of California-Los Angeles, CA 90095, USA.

出版信息

Amyloid. 2011 Sep;18(3):98-107. doi: 10.3109/13506129.2011.580399. Epub 2011 Jun 13.

DOI:10.3109/13506129.2011.580399
PMID:21668291
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3396427/
Abstract

A familial form of Alzheimer disease recently was described in a kindred in Osaka, Japan. This kindred possesses an amyloid β-protein (Aβ) precursor mutation within the Aβ coding region that results in the deletion of Glu22 (ΔE22). We report here results of studies of [ΔE22]Aβ40 and [ΔE22]Aβ42 that sought to elucidate the conformational dynamics, oligomerization behavior, fibril formation kinetics, fibril morphology, and fibril stability of these mutant peptides. Both [ΔE22]Aβ peptides had extraordinary β-sheet formation propensities. The [ΔE22]Aβ40 mutant formed β-sheet secondary structure elements ≈400-fold faster. Studies of β-sheet stability in the presence of fluorinated alcohol cosolvents or high pH revealed that the ΔE22 mutation substantially increased stability, producing a rank order of [ΔE22]Aβ42 >>Aβ42 > [ΔE22]Aβ40 > Aβ40. The mutation facilitated formation of oligomers by [ΔE22]Aβ42 (dodecamers and octadecamers) that were not observed with Aβ42. Both Aβ40 and Aβ42 peptides formed nebulous globular and small string-like structures immediately upon solvation from lyophilizates, whereas short protofibrillar and fibrillar structures were evident immediately in the ΔE22 samples. Determination of the critical concentration for fibril formation for the [ΔE22]Aβ peptides showed it to be ≈1/2 that of the wild type homologues, demonstrating that the mutations causes a modest increase in fibril stability. The magnitude of this increase, when considered in the context of the extraordinary increase in β-sheet propensity for the ΔE22 peptides, suggests that the primary biophysical effect of the mutation is to accelerate conformational changes in the peptide monomer that facilitate oligomerization and higher-order assembly.

摘要

一种家族性阿尔茨海默病最近在日本大阪的一个家族中被描述。该家族在淀粉样β-蛋白(Aβ)编码区存在 Aβ 前体突变,导致 Glu22 缺失(ΔE22)。我们在此报告对[ΔE22]Aβ40 和[ΔE22]Aβ42 的研究结果,旨在阐明这些突变肽的构象动力学、寡聚化行为、纤维形成动力学、纤维形态和纤维稳定性。这两种[ΔE22]Aβ 肽都具有非凡的β-折叠形成倾向。[ΔE22]Aβ40 突变体形成β-折叠二级结构元件的速度快约 400 倍。在氟代醇共溶剂或高 pH 存在下研究β-折叠稳定性时发现,ΔE22 突变显著增加了稳定性,产生了[ΔE22]Aβ42>>Aβ42>[ΔE22]Aβ40>Aβ40 的顺序。该突变促进了[ΔE22]Aβ42(十二聚体和十八聚体)的寡聚体形成,而 Aβ42 则没有观察到这种情况。Aβ40 和 Aβ42 肽在从冻干物中溶剂化时立即形成模糊的球状和小的串状结构,而在 ΔE22 样品中则立即出现短原纤维和纤维结构。确定[ΔE22]Aβ 肽形成纤维的临界浓度表明,其约为野生型同系物的 1/2,表明突变导致纤维稳定性略有增加。当考虑到 ΔE22 肽β-折叠倾向的非凡增加时,这种增加的幅度表明突变的主要生物物理效应是加速肽单体的构象变化,从而促进寡聚化和更高阶组装。