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淀粉样β和胰岛淀粉样多肽片段的交叉聚集的模拟。

Simulations of cross-amyloid aggregation of amyloid-β and islet amyloid polypeptide fragments.

机构信息

Department of Biochemistry, Virginia Tech, Blacksburg, Virginia.

Department of Biochemistry, Virginia Tech, Blacksburg, Virginia; Center for Drug Discovery, Virginia Tech, Blacksburg, Virginia.

出版信息

Biophys J. 2022 Jun 7;121(11):2002-2013. doi: 10.1016/j.bpj.2022.05.007. Epub 2022 May 10.

Abstract

Amyloid-β (Aβ) and islet amyloid polypeptide (IAPP) are small peptides, classified as amyloids, that have the potential to self-assemble and form cytotoxic species, such as small soluble oligomers and large insoluble fibrils. The formation of Aβ aggregates facilitates the progression of Alzheimer's disease (AD), while IAPP aggregates induce pancreatic β-cell apoptosis, leading to exacerbation of type 2 diabetes (T2D). Cross-amyloid interactions between Aβ and IAPP have been described both in vivo and in vitro, implying the role of Aβ or IAPP as modulators of cytotoxic self-aggregation of each species, and suggesting that Aβ-IAPP interactions are a potential molecular link between AD and T2D. Using molecular dynamics (MD) simulations, "hotspot" regions of the two peptides were studied to understand the formation of hexamers in a heterogeneous and homogeneous peptide-containing environment. Systems of only Aβ peptides formed antiparallel, β-barrel-like structures, while systems of only IAPP peptides formed stacked, parallel β-sheets and had relatively unstable aggregation structures after 2 μs of simulation time. Systems containing both Aβ and IAPP (1:1 ratio) hexamers showed antiparallel, β-barrel-like structures, with an interdigitated arrangement of Aβ and IAPP. These β-barrel structures have features of cytotoxic amyloid species identified in previous literature. Ultimately, this work seeks to provide atomistic insight into both the mechanism behind cross-amyloid interactions and structural morphologies of these toxic amyloid species.

摘要

淀粉样蛋白-β(Aβ)和胰岛淀粉样多肽(IAPP)是两种小肽,它们被归类为淀粉样蛋白,具有自我组装和形成细胞毒性物质的潜力,如小可溶性寡聚物和大不溶性纤维。Aβ 聚集物的形成促进了阿尔茨海默病(AD)的进展,而 IAPP 聚集物诱导胰岛β细胞凋亡,导致 2 型糖尿病(T2D)恶化。Aβ 和 IAPP 之间的交叉淀粉样相互作用在体内和体外都有描述,这意味着 Aβ 或 IAPP 作为每种物质细胞毒性自聚集的调节剂的作用,并表明 Aβ-IAPP 相互作用是 AD 和 T2D 之间的潜在分子联系。使用分子动力学(MD)模拟,研究了两种肽的“热点”区域,以了解在异质和同质含肽环境中六聚体的形成。仅含有 Aβ 肽的系统形成了反平行的β-桶样结构,而仅含有 IAPP 肽的系统形成了堆积的平行β-片层,并且在模拟时间为 2μs 后具有相对不稳定的聚集结构。含有 Aβ 和 IAPP(1:1 比例)六聚体的系统显示出反平行的β-桶样结构,Aβ 和 IAPP 呈交错排列。这些β-桶结构具有以前文献中鉴定的细胞毒性淀粉样物质的特征。最终,这项工作旨在为交叉淀粉样相互作用的机制以及这些有毒淀粉样物质的结构形态提供原子水平的见解。

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