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作为非荧光 Förster 共振能量转移受体的暗猝灭剂的单分子光物理特性

Single-molecule photophysics of dark quenchers as non-fluorescent FRET acceptors.

作者信息

Holzmeister Phil, Wünsch Bettina, Gietl Andreas, Tinnefeld Philip

机构信息

TU Braunschweig, Institut für Physikalische und Theoretische Chemie, Hans-Sommer-Str. 10, 38106 Braunschweig, Germany.

出版信息

Photochem Photobiol Sci. 2014 Jun;13(6):853-8. doi: 10.1039/c3pp50274k.

Abstract

Dark quencher chromophores are interesting alternatives to common single-molecule FRET acceptors. Due to their short excited state lifetime, they should be less prone to complex photophysics and bleaching. We find, however, that for common enzymatic oxygen scavenging systems and photoprotection strategies - the gold standard of single-molecule measurements - the quenchers BBQ650 and BHQ-2 induce frequent blinking of the donor molecule. They switch in a photoinduced process to what we identify as a radical anion state and back. We further make use of the broad absorption spectrum for selective bleaching of the quenchers in order to photoactivate the fluorescence of initially completely quenched dye molecules. This represents a general strategy to turn fluorescent dyes into photoactivatable probes.

摘要

暗猝灭发色团是常见单分子荧光共振能量转移(FRET)受体的有趣替代物。由于其激发态寿命短,它们应该不太容易出现复杂的光物理现象和光漂白。然而,我们发现,对于常见的酶促氧清除系统和光保护策略(单分子测量的金标准),猝灭剂BBQ650和BHQ-2会频繁导致供体分子闪烁。它们在光诱导过程中转变为我们所确定的自由基阴离子状态,然后再转变回来。我们还利用宽吸收光谱对猝灭剂进行选择性漂白,以便光激活最初完全猝灭的染料分子的荧光。这代表了一种将荧光染料转变为光激活探针的通用策略。

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