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利用供体纳米粒子与受体量子点之间的共振能量转移进行蛋白质定量。

Protein quantification using resonance energy transfer between donor nanoparticles and acceptor quantum dots.

机构信息

Laboratory of Biophysics, University of Turku, Tykistökatu 6A, 20520 Turku, Finland.

出版信息

Anal Chem. 2013 Mar 5;85(5):2921-6. doi: 10.1021/ac303586n. Epub 2013 Feb 21.

Abstract

A homogeneous time-resolved luminescence resonance energy transfer (TR-LRET) assay has been developed to quantify proteins. The competitive assay is based on resonance energy transfer (RET) between two luminescent nanosized particles. Polystyrene nanoparticles loaded with Eu(3+) chelates (EuNPs) act as donors, while protein-coated quantum dots (QDs), either CdSe/ZnS emitting at 655 nm (QD655-strep) or CdSeTe/ZnS with emission wavelength at 705 nm (QD705-strep), are acceptors. In the absence of analyte protein, in our case bovine serum albumin (BSA), the protein-coated QDs bind nonspecifically to the EuNPs, leading to RET. In the presence of analyte proteins, the binding of the QDs to the EuNPs is prevented and the RET signal decreases. RET from the EuNPs to the QDs was confirmed and characterized with steady-state and time-resolved luminescence spectroscopy. In accordance with the Förster theory, the approximate average donor-acceptor distance is around 15 nm at RET efficiencies, equal to 15% for QD655 and 13% for QD705 acceptor, respectively. The limits of detection are below 10 ng of BSA with less than a 10% average coefficient of variation. The assay sensitivity is improved, when compared to the most sensitive commercial methods. The presented mix-and-measure method has potential to be implemented into routine protein quantification in biological laboratories.

摘要

已开发出一种均相时间分辨荧光共振能量转移(TR-LRET)分析来定量蛋白质。竞争分析基于两个发光纳米颗粒之间的共振能量转移(RET)。负载 Eu(3+)螯合物的聚苯乙烯纳米颗粒(EuNPs)用作供体,而蛋白包被的量子点(QDs),无论是发射波长为 655nm 的 CdSe/ZnS(QD655-strep)还是发射波长为 705nm 的 CdSeTe/ZnS(QD705-strep),都是受体。在不存在分析物蛋白质(在我们的情况下为牛血清白蛋白(BSA))的情况下,蛋白包被的 QDs 非特异性地结合到 EuNPs 上,导致 RET。在存在分析物蛋白质的情况下,QD 与 EuNPs 的结合被阻止,RET 信号降低。通过稳态和时间分辨荧光光谱证实并表征了 EuNPs 到 QDs 的 RET。根据Förster 理论,RET 效率下的近似平均供体-受体距离约为 15nm,对于 QD655 分别为 15%,对于 QD705 受体分别为 13%。检测限低于 10ng BSA,平均变异系数小于 10%。与最灵敏的商业方法相比,该测定法的灵敏度得到了提高。提出的混合测量方法有可能在生物实验室中实现常规蛋白质定量。

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