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单分子光子印迹荧光共振能量转移光谱研究酶的构象动力学。

Single-molecule photon stamping FRET spectroscopy study of enzymatic conformational dynamics.

机构信息

Bowling Green State University, Center for Photochemical Sciences, Department of Chemistry, Bowling Green, Ohio 43403, USA.

出版信息

Phys Chem Chem Phys. 2013 Jan 21;15(3):770-5. doi: 10.1039/c2cp42944f.

Abstract

The fluorescence resonant energy transfer (FRET) from a donor to an acceptor via transition dipole-dipole interactions decreases the donor's fluorescent lifetime. The donor's fluorescent lifetime decreases as the FRET efficiency increases, following the equation: E(FRET) = 1 - τ(DA)/τ(D), where τ(D) and τ(DA) are the donor fluorescence lifetime without FRET and with FRET. Accordingly, the FRET time trajectories associated with single-molecule conformational dynamics can be recorded by measuring the donor's lifetime fluctuations. In this article, we report our work on the use of a Cy3/Cy5-labeled enzyme, HPPK to demonstrate probing single-molecule conformational dynamics in an enzymatic reaction by measuring single-molecule FRET donor lifetime time trajectories. Compared with single-molecule fluorescence intensity-based FRET measurements, single-molecule lifetime-based FRET measurements are independent of fluorescence intensity. The latter has an advantage in terms of eliminating the analysis background noise from the acceptor fluorescence detection leak through noise, excitation light intensity noise, or light scattering noise due to local environmental factors, for example, in a AFM-tip correlated single-molecule FRET measurements. Furthermore, lifetime-based FRET also supports simultaneous single-molecule fluorescence anisotropy.

摘要

荧光共振能量转移(FRET)通过偶极-偶极相互作用从供体转移到受体,从而降低供体的荧光寿命。随着 FRET 效率的增加,供体的荧光寿命会按照以下公式降低:E(FRET) = 1 - τ(DA)/τ(D),其中 τ(D)和 τ(DA)分别是没有 FRET 和有 FRET 时供体的荧光寿命。因此,可以通过测量供体的寿命波动来记录与单分子构象动力学相关的 FRET 时间轨迹。在本文中,我们报告了使用 Cy3/Cy5 标记的酶 HPPK 的工作,以通过测量单分子 FRET 供体寿命时间轨迹来证明在酶反应中探测单分子构象动力学。与基于单分子荧光强度的 FRET 测量相比,基于单分子寿命的 FRET 测量不依赖于荧光强度。后者在消除分析背景噪声方面具有优势,这些背景噪声来自于受体荧光检测漏通噪声、激发光强度噪声或局部环境因素(例如在 AFM 针尖相关的单分子 FRET 测量中)引起的光散射噪声。此外,基于寿命的 FRET 还支持同时进行单分子荧光各向异性测量。

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