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一种可调节且通用的化学遗传近红外荧光报告基因。

A tunable and versatile chemogenetic near-infrared fluorescent reporter.

作者信息

El Hajji Lina, Bunel Benjamin, Joliot Octave, Li Chenge, Tebo Alison G, Rampon Christine, Volovitch Michel, Fischer Evelyne, Pietrancosta Nicolas, Perez Franck, Morin Xavier, Vriz Sophie, Gautier Arnaud

机构信息

Sorbonne Université, École Normale Supérieure, Université PSL, CNRS, Chimie Physique et Chimie du Vivant (CPCV), 75005, Paris, France.

Institut Curie, INSERM, CNRS, Chemical Biology of Cancer (CBC), 75005, Paris, France.

出版信息

Nat Commun. 2025 Mar 16;16(1):2594. doi: 10.1038/s41467-025-58017-9.

Abstract

Near-infrared (NIR) fluorescent reporters open interesting perspectives for multiplexed imaging with higher contrast and depth using less toxic light. Here, we propose nirFAST, a small (14 kDa) chemogenetic NIR fluorescent reporter, displaying higher cellular brightness compared to top-performing NIR fluorescent proteins. nirFAST binds and stabilizes the fluorescent state of synthetic cell permeant fluorogenic chromophores (so-called fluorogens), otherwise dark when free. nirFAST displays tunable NIR, far-red or red emission through change of fluorogen. nirFAST allows imaging and spectral multiplexing in live cultured mammalian cells, chicken embryo tissues and zebrafish larvae. Its suitability for stimulated emission depletion nanoscopy enabled protein imaging with subdiffraction resolution in live cells. nirFAST enabled the design of a two-color cell cycle indicator for monitoring the different phases of the cell cycle. Finally, bisection of nirFAST allowed the design of a chemically induced dimerization technology with NIR fluorescence readout, enabling the control and visualization of protein proximity.

摘要

近红外(NIR)荧光报告分子为使用毒性较小的光进行具有更高对比度和深度的多重成像开辟了有趣的前景。在此,我们提出了nirFAST,一种小型(14 kDa)化学遗传近红外荧光报告分子,与表现最佳的近红外荧光蛋白相比,具有更高的细胞亮度。nirFAST结合并稳定合成的细胞渗透性荧光团(所谓的荧光原)的荧光状态,否则游离时为暗态。nirFAST通过改变荧光原显示出可调谐的近红外、远红或红色发射。nirFAST允许在活的培养哺乳动物细胞、鸡胚组织和斑马鱼幼虫中进行成像和光谱多重分析。它适用于受激发射损耗纳米显微镜,能够在活细胞中以亚衍射分辨率进行蛋白质成像。nirFAST使得能够设计一种双色细胞周期指示剂来监测细胞周期的不同阶段。最后,nirFAST的二分法允许设计一种具有近红外荧光读出的化学诱导二聚化技术,从而能够控制和可视化蛋白质的接近程度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c91/11911394/3624755f0926/41467_2025_58017_Fig1_HTML.jpg

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