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Fluorescence umpolung enables light-up sensing of N-acetyltransferases and nerve agents
Journal article   Peer reviewed

Fluorescence umpolung enables light-up sensing of N-acetyltransferases and nerve agents

Chenxu Yan, Zhiqian Guo, Weijie Chi, Wei Fu, Syed Ali Abbas Abedi, Xiaogang Liu, He Tian and Wei-Hong Zhu
Nature communications, Vol.12(1), pp.3869-10
23/06/2021
PMID: 34162875

Abstract

Acetyltransferases - chemistry Acetyltransferases - metabolism Animals Electrons Female Fluorescence Fluorescent Dyes - chemistry HeLa Cells Hep G2 Cells Humans Indazoles - chemistry Indazoles - metabolism Mice Mice, Inbred BALB C Mice, Nude Molecular Structure Nerve Agents - chemistry Nerve Agents - metabolism Quantum Theory Spectrometry, Fluorescence
Intramolecular charge transfer (ICT) is a fundamental mechanism that enables the development of numerous fluorophores and probes for bioimaging and sensing. However, the electron-withdrawing targets (EWTs)-induced fluorescence quenching is a long-standing and unsolved issue in ICT fluorophores, and significantly limits the widespread applicability. Here we report a simple and generalizable structural-modification for completely overturning the intramolecular rotation driving energy, and thus fully reversing the ICT fluorophores' quenching mode into light-up mode. Specifically, the insertion of an indazole unit into ICT scaffold can fully amplify the intramolecular rotation in donor-indazole-π-acceptor fluorophores (fluorescence OFF), whereas efficiently suppressing the rotation in their EWT-substituted system (fluorescence ON). This molecular strategy is generalizable, yielding a palette of chromophores with fluorescence umpolung that spans visible and near-infrared range. This strategy expands the bio-analytical toolboxes and allows exploiting ICT fluorophores for light-up sensing of EWTs including N-acetyltransferases and nerve agents.
url
https://doi.org/10.1038/s41467-021-24187-5View
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