Grazon Chloé, Chern Margaret, Lally Patrick, Baer R C, Fan Andy, Lecommandoux Sébastien, Klapperich Catherine, Dennis Allison M, Galagan James E, Grinstaff Mark W
Department of Chemistry, Boston University Boston MA 02215 USA
University Bordeaux, CNRS, Bordeaux INP, LCPO, UMR 5629 F-33600 Pessac France
Chem Sci. 2022 May 4;13(22):6715-6731. doi: 10.1039/d1sc06921g. eCollection 2022 Jun 7.
Förster resonance energy transfer (FRET) is a widely used and ideal transduction modality for fluorescent based biosensors as it offers high signal to noise with a visibly detectable signal. While intense efforts are ongoing to improve the limit of detection and dynamic range of biosensors based on biomolecule optimization, the selection of and relative location of the dye remains understudied. Herein, we describe a combined experimental and computational study to systematically compare the nature of the dye, , organic fluorophore (Cy5 or Texas Red) inorganic nanoparticle (QD), and the position of the FRET donor or acceptor on the biomolecular components. Using a recently discovered transcription factor (TF)-deoxyribonucleic acid (DNA) biosensor for progesterone, we examine four different biosensor configurations and report the quantum yield, lifetime, FRET efficiency, IC50, and limit of detection. Fitting the computational models to the empirical data identifies key molecular parameters driving sensor performance in each biosensor configuration. Finally, we provide a set of design parameters to enable one to select the fluorophore system for future intermolecular biosensors using FRET-based conformational regulation in assays and new diagnostic devices.
荧光共振能量转移(FRET)是一种广泛应用于基于荧光的生物传感器的理想转导方式,因为它能提供高信噪比且具有可见的可检测信号。尽管目前人们正在大力努力通过生物分子优化来提高生物传感器的检测限和动态范围,但染料的选择及其相对位置仍未得到充分研究。在此,我们描述了一项结合实验和计算的研究,以系统地比较染料(有机荧光团(Cy5或Texas Red)、无机纳米颗粒(量子点))的性质以及FRET供体或受体在生物分子组件上的位置。使用最近发现的用于检测孕酮的转录因子(TF)-脱氧核糖核酸(DNA)生物传感器,我们研究了四种不同的生物传感器配置,并报告了量子产率、寿命、FRET效率、IC50和检测限。将计算模型与实验数据拟合,确定了每种生物传感器配置中驱动传感器性能的关键分子参数。最后,我们提供了一组设计参数,使人们能够为未来使用基于FRET的构象调节的分子间生物传感器在检测和新型诊断设备中选择荧光团系统。