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光活化的碳和硅罗丹明及其在 MINFLUX 纳米显微镜中的应用。

Photoactivatable Carbo- and Silicon-Rhodamines and Their Application in MINFLUX Nanoscopy.

机构信息

Department of Optical Nanoscopy, Max Planck Institute for Medical Research (MPI-MR), Jahnstraße 29, 69120, Heidelberg, Germany.

Department of NanoBiophotonics, Max Planck Institute for Multidisciplinary Sciences (MPI-NAT), Am Fassberg 11, 37077, Göttingen, Germany.

出版信息

Angew Chem Int Ed Engl. 2023 Oct 9;62(41):e202302781. doi: 10.1002/anie.202302781. Epub 2023 Sep 1.

Abstract

New photoactivatable fluorescent dyes (rhodamine, carbo- and silicon-rhodamines [SiR]) with emission ranging from green to far red have been prepared, and their photophysical properties studied. The photocleavable 2-nitrobenzyloxycarbonyl unit with an alpha-carboxyl group as a branching point and additional functionality was attached to a polycyclic and lipophilic fluorescent dye. The photoactivatable probes having the HaloTagTM amine (O2) ligand bound with a dye core were obtained and applied for live-cell staining in stable cell lines incorporating Vimentin (VIM) or Nuclear Pore Complex Protein NUP96 fused with the HaloTag. The probes were applied in 2D (VIM, NUP96) and 3D (VIM) MINFLUX nanoscopy, as well as in superresolution fluorescence microscopy with single fluorophore activation (VIM, live-cell labeling). Images of VIM and NUPs labeled with different dyes were acquired and their apparent dimensions and shapes assessed on a lower single-digit nanometer scale. Applicability and performance of the photoactivatable dye derivatives were evaluated in terms of photoactivation rate, labeling and detection efficiency, number of detected photons per molecule and other parameters related to MINFLUX nanoscopy.

摘要

新的光活化荧光染料(罗丹明、碳和硅罗丹明[SiR])已被制备,其光物理性质也已被研究。带有一个 α-羧基作为分支点和额外功能的光可裂解 2-硝基苯甲氧基羰基单元被连接到多环和脂溶性荧光染料上。获得了带有 HaloTagTM 胺(O2)配体与染料核心结合的光活化探针,并将其应用于包含与 HaloTag 融合的波形蛋白(Vimentin,VIM)或核孔复合物蛋白 NUP96 的稳定细胞系中的活细胞染色。这些探针被应用于二维(VIM、NUP96)和三维(VIM)MINFLUX 纳米显微镜,以及具有单荧光团激活的超分辨率荧光显微镜(VIM、活细胞标记)中。使用不同染料标记的 VIM 和 NUPs 的图像被获取,并在低至个位数纳米的尺度上评估其表观尺寸和形状。光活化染料衍生物的适用性和性能通过光活化速率、标记和检测效率、每个分子检测到的光子数以及与 MINFLUX 纳米显微镜相关的其他参数来评估。

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