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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >The hairpin conformation of the amyloid β peptide is an important structural motif along the aggregation pathway
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The hairpin conformation of the amyloid β peptide is an important structural motif along the aggregation pathway

机译:淀粉样β肽的发夹构象是沿聚集途径的重要结构基序

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摘要

The amyloid β (Aβ) peptides are 39–42 residuelong peptides found in the senile plaques in the brains of Alzheimer’s disease (AD) patients. These peptides selfaggregate in aqueous solution, going from soluble and mainly unstructured monomers to insoluble ordered fibrils. The aggregation process(es) are strongly influenced by environmental conditions. Several lines of evidence indicate that the neurotoxic species are the intermediate oligomeric states appearing along the aggregation pathways. This minireview summarizes recent findings, mainly based on solution and solid-state NMR experiments and electron microscopy, which investigate the molecular structures and characteristics of the Aβ peptides at different stages along the aggregation pathways. We conclude that a hairpin-like conformation constitutes a common motif for the Aβ peptides in most of the described structures. There are certain variations in different hairpin conformations, for example regarding H-bonding partners, which could be one reason for the molecular heterogeneity observed in the aggregated systems. Interacting hairpins are the building blocks of the insoluble fibrils, again with variations in how hairpins are organized in the cross-section of the fibril, perpendicular to the fibril axis. The secondary structure propensities can be seen already in peptide monomers in solution. Unfortunately, detailed structural information about the intermediate oligomeric states is presently not available. In the review, special attention is given to metal ion interactions, particularly the binding constants and ligand structures of Aβ complexes with Cu(II) and Zn(II), since these ions affect the aggregation process(es) and are considered to be involved in the molecular mechanisms underlying AD pathology.
机译:淀粉样蛋白β(Aβ)肽是在阿尔茨海默氏病(AD)患者大脑中的老年斑中发现的39–42个残基长的肽。这些肽在水溶液中自聚集,从可溶性和主要是非结构化的单体变成不溶的有序原纤维。聚集过程受到环境条件的强烈影响。几条证据表明,神经毒性物质是沿着聚集途径出现的中间低聚状态。这篇小型综述总结了最近的发现,主要是基于溶液和固态NMR实验以及电子显微镜,研究了沿聚集途径不同阶段的Aβ肽的分子结构和特征。我们得出结论,在大多数描述的结构中,发夹状构象构成Aβ肽的常见基序。在不同的发夹构象中存在某些变化,例如关于H键键配偶体,这可能是在聚集系统中观察到分子异质性的原因之一。相互作用的发夹是不溶性原纤维的组成部分,同样在垂直于原纤维轴的原纤维横截面上,发夹的组织方式也有所变化。在溶液中的肽单体中已经可以看到二级结构的倾向。不幸的是,有关中间低聚物状态的详细结构信息目前尚不可用。在审查中,特别注意金属离子的相互作用,尤其是Aβ与Cu(II)和Zn(II)的配合物的结合常数和配体结构,因为这些离子会影响聚集过程并被认为与之有关。在AD病理学的分子机制中。

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