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A mix-and-click method to measure amyloid-β concentration with sub-micromolar sensitivity

机译:混合点击法测量亚微摩尔灵敏度的β-淀粉样蛋白

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摘要

Aggregation of amyloid-β (Aβ) protein plays a central role in Alzheimer's disease. Because protein aggregation is a concentration-dependent process, rigorous investigations require accurate concentration measurements. Owing to the high aggregation propensity of Aβ protein, working solutions of Aβ are typically in the low micromolar range. Therefore, an ideal Aβ quantification method requires high sensitivity without sacrificing speed and accuracy. Absorbance at 280 nm is frequently used to measure Aβ concentration, but the sensitivity is low with only one tyrosine and no tryptophan residues in the Aβ sequence. Here we present a fluorescence method for Aβ quantification using fluorescamine, which gives high fluorescence upon reaction with primary amines. We show that, using hen egg white lysozyme as a standard, fluorescence correlates linearly with primary amine concentration across a wide range of fluorescamine concentrations, from 62.5 to 1000 µM. The maximal sensitivity of detection is achieved at a fluorescamine concentration of 250 µM or higher. The fluorescamine method is compatible with the presence of dimethyl sulfoxide, which is commonly used in the preparation of Aβ oligomers, and limits the use of absorbance at 280 nm due to its high background reading. Using aggregation kinetics, we show that the fluorescamine method gives accurate concentration measurements at low micromolar range and leads to highly consistent aggregation data. We recommend the fluorescamine assay to be used for routine and on-the-fly concentration determination in Aβ oligomerization and fibrillization experiments.
机译:淀粉样β(Aβ)蛋白的聚集在阿尔茨海默氏病中起重要作用。由于蛋白质聚集是一个浓度依赖性的过程,因此严格的研究需要精确的浓度测量。由于Aβ蛋白的高聚集倾向,Aβ的工作溶液通常在低微摩尔范围内。因此,理想的Aβ定量方法需要高灵敏度而不牺牲速度和准确性。 280 nm处的吸光度通常用于测量Aβ浓度,但灵敏度很低,只有一个酪氨酸,Aβ序列中没有色氨酸残基。在这里,我们介绍了一种使用荧光胺进行Aβ定量的荧光方法,与伯胺反应后可产生高荧光。我们显示,以鸡蛋清溶菌酶为标准,在62.5至1000μm的宽范围的氟胺浓度范围内,荧光与伯胺浓度线性相关。当氟胺浓度为250 higherµM或更高时,可实现最大的检测灵敏度。荧光胺法与通常用于制备Aβ低聚物的二甲基亚砜的存在兼容,并且由于其高背景读数而限制了在280nm处使用吸光度。使用聚集动力学,我们表明,氟胺方法可在低微摩尔范围内提供准确的浓度测量值,并导致高度一致的聚集数据。我们建议将荧光胺测定法用于Aβ低聚和原纤化实验中的常规浓度和动态浓度测定。

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