Department of Biomedical Engineering, Columbia University , New York, New York 10027, United States.
Department of Bio-Industrial Mechatronics Engineering, National Taiwan University , Taipei 10617, Taiwan.
ACS Appl Mater Interfaces. 2016 May 18;8(19):12048-55. doi: 10.1021/acsami.6b02871. Epub 2016 May 3.
A unique interaction between the cyanine dye and negatively charged quantum dot is used to construct a signal-on biaptameric quantum dot (QD) Förster resonance energy transfer (FRET) beacon for protein detection and distinct aptamer characterization. The beacon comprises a pair of aptamers, one intercalated with the cyanine dye (YOYO-3) and the other conjugated to a negatively charged, carboxyl-QD. When the target protein is present, structural folding and sandwich association of the two aptamers take place. As a consequence, YOYO-3 is displaced from the folded aptamer and transferred to the unblocked QD surface to yield a target concentration-dependent FRET signal. As a proof-of-principle, we demonstrate the detection of thrombin ranging from nanomolar to submicromolar concentrations and confirm the dye translocation using cylindrical illumination confocal spectroscopy (CICS). The proposed beacon provides a simple, rapid, signal-on FRET detection for protein as well as a potential platform for distinct aptamer screening.
一种独特的菁染料与带负电荷的量子点之间的相互作用被用于构建一种信号开启的双适体量子点(QD)荧光共振能量转移(FRET)生物探针用于蛋白质检测和独特适体的表征。该生物探针由一对适体组成,其中一个与菁染料(YOYO-3)嵌入,另一个与带负电荷的羧基-QD 偶联。当存在目标蛋白时,两个适体发生结构折叠和三明治式缔合。结果,YOYO-3 从折叠的适体中被置换出来,并转移到未封闭的 QD 表面,从而产生与目标浓度相关的 FRET 信号。作为原理验证,我们展示了从纳摩尔到亚微米摩尔浓度范围内凝血酶的检测,并使用柱面照明共焦光谱学(CICS)证实了染料的转位。所提出的生物探针为蛋白质提供了一种简单、快速、信号开启的 FRET 检测方法,同时也是一种用于独特适体筛选的潜在平台。