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零模式波导中Alexa染料之间的远程单分子荧光共振能量转移

Long-Range Single-Molecule Förster Resonance Energy Transfer between Alexa Dyes in Zero-Mode Waveguides.

作者信息

Baibakov Mikhail, Patra Satyajit, Claude Jean-Benoît, Wenger Jérôme

机构信息

Aix Marseille Univ, CNRS, Centrale Marseille, Institut Fresnel, 13013 Marseille, France.

出版信息

ACS Omega. 2020 Mar 17;5(12):6947-6955. doi: 10.1021/acsomega.0c00322. eCollection 2020 Mar 31.

Abstract

Zero-mode waveguide (ZMW) nano-apertures milled in metal films were proposed to improve the Förster resonance energy transfer (FRET) efficiency and enable single-molecule FRET detection beyond the 10 nm barrier, overcoming the restrictions of diffraction-limited detection in a homogeneous medium. However, the earlier ZMW demonstrations were limited to the Atto 550-Atto 647N fluorophore pair, asking the question whether the FRET enhancement observation was an artifact related to this specific set of fluorescent dyes. Here, we use Alexa Fluor 546 and Alexa Fluor 647 to investigate single-molecule FRET at large donor-acceptor separations exceeding 10 nm inside ZMWs. These Alexa fluorescent dyes feature a markedly different chemical structure, surface charge, and hydrophobicity as compared to their Atto counterparts. Our single molecule data on Alexa 546-Alexa 647 demonstrate enhanced FRET efficiencies at large separations exceeding 10 nm, extending the spatial range available for FRET and confirming the earlier conclusions. By showing that the FRET enhancement inside a ZMW does not depend on the set of fluorescent dyes, this report is an important step to establish the relevance of ZMWs to extend the sensitivity and detection range of FRET, while preserving its ability to work on regular fluorescent dye pairs.

摘要

有人提出在金属薄膜上铣出零模式波导(ZMW)纳米孔径,以提高Förster共振能量转移(FRET)效率,并实现超越10纳米障碍的单分子FRET检测,克服均匀介质中衍射极限检测的限制。然而,早期的ZMW演示仅限于Atto 550-Atto 647N荧光团对,这就引发了一个问题,即FRET增强观测是否是与这组特定荧光染料相关的假象。在这里,我们使用Alexa Fluor 546和Alexa Fluor 647来研究ZMW内部供体-受体间距超过10纳米时的单分子FRET。与Atto同类染料相比,这些Alexa荧光染料具有明显不同的化学结构、表面电荷和疏水性。我们关于Alexa 546-Alexa 647的单分子数据表明,在超过10纳米的大间距下FRET效率增强,扩展了FRET可用的空间范围并证实了早期结论。通过表明ZMW内部的FRET增强不依赖于荧光染料组,本报告是确立ZMW对于扩展FRET的灵敏度和检测范围的相关性的重要一步,同时保留其对常规荧光染料对起作用的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9eab/7114734/c4292cf7d5ca/ao0c00322_0001.jpg

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