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Role of beta-amyloid structure and residue accessibility in cell interactions associated with Alzheimer's disease.

机译:β-淀粉样蛋白结构和残基可及性在阿尔茨海默氏病相关细胞相互作用中的作用。

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Beta-amyloid peptide (Abeta) is the major protein constituent found in senile plaques in Alzheimer's disease (AD). Abeta is able to bind in the cell membrane to a variety of biomolecules, including lipids and protein, but the sequence of biological events that leads to cell death is not well understood. Its extracellular accumulation is believed to be related with neurodegeneration and its toxicity related to its structure or aggregation state.;The purpose of this study was to characterize Abeta structure; first, at the residue level to identify which residues have an important role on peptide's tertiary structure, followed by the examination of its interactions with the cell membrane, with residue level resolution.;An approach based on chemical modification of primary amines and mass spectrometric (MS) detection was used to identify residues on Abeta peptide that were exposed or buried upon changes in peptide structure associated with aggregation. Tandem mass spectrometry and limited proteolysis were used to identify the location of the modified primary amines within the Abeta sequence. Results indicate that the N-terminus was the most accessible primary amine in the fibril, followed by lysine 28, then lysine 16. A kinetic analysis of the data was then performed to quantify differences in accessibility between these modification sites. We estimated equilibrium unfolding constants for each modified site of the peptide, and determined that the unfolding constant for the N-terminus was ~100 times greater than that for K28, which was ~6 times greater than that for K16.;The interaction between Abeta and the cells is followed by a cascade of biological responses not well characterized. In order to target cell membrane proteins preferred for Abeta binding, fluorescent techniques (FRET and FCS) were used to measure proximities and elucidate conformational changes in Abeta structure upon interactions. Our study compared different cell membrane receptors and we found that Abeta bound to cell surface integrins within 6nm. In addition, while Abeta still bound to the surface when lysines on the Abeta structure were modified, Abeta no longer bound near integrins. Finally, employing FCS, we analyzed the Abeta aggregation process in the absence and presence of cells in order to identify structures with more propensity to interact with cells. In the presence of the cells, the concentration of soluble species associated with Abeta fibrils decreases ~10 times, suggesting that soluble oligomers leave the solution to interact with the cells.;This work establishes an approach to examine Abeta peptide structure and cell interactions at the molecular level. It is a first step in designing novel therapies for prevention of Abeta structural transitions and/or cell interactions associated with neurotoxicity in Alzheimer's disease.
机译:β淀粉样肽(Abeta)是老年痴呆(AD)老年斑中发现的主要蛋白质成分。 Abeta能够在细胞膜上与多种生物分子结合,包括脂质和蛋白质,但是导致细胞死亡的生物学事件的序列尚不清楚。它的细胞外积累被认为与神经变性有关,其毒性与它的结构或聚集状态有关。首先,在残基水平上确定哪些残基对肽的三级结构具有重要作用,然后检查其与细胞膜的相互作用,并确定残基水平。;一种基于伯胺化学修饰和质谱的方法( MS)检测用于鉴定Abeta肽上与聚集相关的肽结构变化时暴露或掩埋的残基。串联质谱法和有限的蛋白水解作用被用来鉴定修饰的伯胺在Abeta序列中的位置。结果表明,N-末端是原纤维中最易接近的伯胺,其次是赖氨酸28,然后是赖氨酸16。然后对数据进行动力学分析以量化这些修饰位点之间可及性的差异。我们估计了肽的每个修饰位点的平衡解折叠常数,并确定N末端的解折叠常数比K28的解折叠常数大100倍,比K16的解折叠常数大6倍。细胞之后是一系列尚未充分表征的生物学反应。为了靶向优选Abeta结合的细胞膜蛋白,荧光技术(FRET和FCS)用于测量邻近度并阐明相互作用后Abeta结构的构象变化。我们的研究比较了不同的细胞膜受体,我们发现Abeta与6nm内的细胞表面整联蛋白结合。另外,当Abeta结构上的赖氨酸被修饰时,尽管Abeta仍与表面结合,但Abeta不再与整联蛋白结合。最后,使用FCS,我们分析了细胞不存在和存在下的Abeta聚集过程,以鉴定具有更倾向于与细胞相互作用的结构。在存在细胞的情况下,与Abeta原纤维相关的可溶性物质的浓度降低约10倍,这表明可溶性寡聚物离开溶液与细胞相互作用;这项工作建立了一种检测Abeta肽结构和细胞相互作用的方法。分子水平。这是设计用于预防与阿尔茨海默氏病中神经毒性相关的Abeta结构转变和/或细胞相互作用的新疗法的第一步。

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