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脉冲交错激发二维荧光寿命相关光谱学

Pulsed-Interleaved-Excitation Two-Dimensional Fluorescence Lifetime Correlation Spectroscopy.

作者信息

Sarkar Bidyut, Ishii Kunihiko, Tahara Tahei

机构信息

Molecular Spectroscopy Laboratory, RIKEN, 2-1 Hirosawa, Wako 351-0198, Japan.

Ultrafast Spectroscopy Research Team, RIKEN Center for Advanced Photonics (RAP), 2-1 Hirosawa, Wako 351-0198, Japan.

出版信息

J Phys Chem B. 2024 May 16;128(19):4685-4695. doi: 10.1021/acs.jpcb.4c01224. Epub 2024 May 1.

Abstract

We report on pulsed-interleaved-excitation two-dimensional fluorescence lifetime correlation spectroscopy (PIE 2D FLCS) to study biomolecular structural dynamics with high sensitivity and high time resolution using Förster resonance energy transfer (FRET). PIE 2D FLCS is an extension of 2D FLCS, which is a unique single-molecule fluorescence method that uses fluorescence lifetime information to distinguish different fluorescence species in equilibrium and resolves their interconversion dynamics with a submicrosecond time resolution. Because 2D FLCS has used only a single-color excitation so far, it was difficult to distinguish a very low-FRET (or zero-FRET) species from only donor-labeled species. We overcome this difficulty by implementing the PIE scheme (i.e., alternate excitation of the donor and acceptor dyes using two temporally interleaved excitations with different colors) to 2D FLCS, realizing two-color excitation and two-color fluorescence detection in 2D FLCS. After proof-of-principle PIE 2D FLCS analysis on the photon data synthesized with Monte Carlo simulation, we apply PIE 2D FLCS to a DNA-hairpin sample and show that this method readily distinguishes four fluorescent species, i.e., high-FRET, low-FRET, and two single-dye-labeled species. In addition, we show that PIE 2D FLCS can also quantitatively evaluate the contributions of the donor-acceptor spectral crosstalk, which often appears as artifacts in FRET studies and degrades the information obtained.

摘要

我们报道了脉冲交错激发二维荧光寿命相关光谱法(PIE 2D FLCS),该方法利用Förster共振能量转移(FRET)以高灵敏度和高时间分辨率研究生物分子的结构动力学。PIE 2D FLCS是二维荧光寿命相关光谱法(2D FLCS)的扩展,2D FLCS是一种独特的单分子荧光方法,它利用荧光寿命信息来区分处于平衡状态的不同荧光物种,并以亚微秒时间分辨率解析它们的相互转化动力学。由于到目前为止2D FLCS仅使用单色激发,因此很难将极低FRET(或零FRET)物种与仅标记供体的物种区分开来。我们通过将PIE方案(即使用两种具有不同颜色的时间交错激发交替激发供体和受体染料)应用于2D FLCS来克服这一困难,从而在2D FLCS中实现双色激发和双色荧光检测。在对通过蒙特卡罗模拟合成的光子数据进行原理验证PIE 2D FLCS分析后,我们将PIE 2D FLCS应用于DNA发夹样品,并表明该方法能够轻松区分四种荧光物种,即高FRET、低FRET以及两种单染料标记物种。此外,我们还表明PIE 2D FLCS还可以定量评估供体-受体光谱串扰的贡献,这种串扰在FRET研究中经常表现为伪像并会降低所获得的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e1b/11104349/a4488a7166bf/jp4c01224_0001.jpg

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