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化学可调的、可逆的荧光亲电试剂用于活细胞纳米显微镜。

Chemically Tuned, Reversible Fluorogenic Electrophile for Live Cell Nanoscopy.

机构信息

Department of Chemistry and Quebec Center for Advanced Materials (QCAM/CQMF), McGill University, 801 Sherbrooke Street West, Montreal H3A 0B8, Quebec, Canada.

Faculty of Chemistry, University of Warsaw, Pasteura 1, Warsaw 02-093, Poland.

出版信息

ACS Sens. 2022 Jan 28;7(1):166-174. doi: 10.1021/acssensors.1c01940. Epub 2022 Jan 5.

Abstract

We report a chemically tuned fluorogenic electrophile designed to conduct live-cell super-resolution imaging by exploiting its stochastic reversible alkylation reaction with cellular nucleophiles. Consisting of a lipophilic BODIPY fluorophore tethered to an electrophilic cyanoacrylate warhead, the new probe cyanoAcroB remains nonemissive due to internal conversion along the cyanoacrylate moiety. Intermittent fluorescence occurs following thiolate Michael addition to the probe, followed by retro-Michael reaction, tuned by the cyano moiety in the acrylate warhead and BODIPY decoration. This design enables long-term super-resolved imaging of live cells by preventing fluorescent product accumulation and background increase, while preserving the pool of the probe. We demonstrate the imaging capabilities of cyanoAcroB via two methods: (i) single-molecule localization microscopy imaging with nanometer accuracy by stochastic chemical activation and (ii) super-resolution radial fluctuation. The latter tolerates higher probe concentrations and low imaging powers, as it exploits the stochastic adduct dissociation. Super-resolved imaging with cyanoAcroB reveals that electrophile alkylation is prevalent in mitochondria and endoplasmic reticulum. The 2D dynamics of these organelles within a single cell are unraveled with tens of nanometers spatial and sub-second temporal resolution through continuous imaging of cyanoAcroB extending for tens of minutes. Our work underscores the opportunities that reversible fluorogenic probes with bioinspired warheads bring toward illuminating chemical reactions with super-resolved features in live cells.

摘要

我们报告了一种化学调控的荧光探针,该探针设计用于通过利用其与细胞亲核试剂的随机可逆烷基化反应进行活细胞超分辨率成像。该探针由一个亲脂性 BODIPY 荧光团与一个亲电性氰基丙烯酸酯弹头连接而成,由于氰基丙烯酸酯部分的内转换,新探针 cyanoAcroB 仍然是非荧光的。在探针上发生硫醇迈克尔加成后,间歇性荧光发生,随后通过丙烯酰基弹头和 BODIPY 修饰的反迈克尔反应进行调谐。这种设计通过防止荧光产物积累和背景增加,同时保留探针库,使活细胞能够进行长期超分辨成像,同时保持探针库的稳定。我们通过两种方法展示了 cyanoAcroB 的成像能力:(i)通过随机化学激活实现纳米级精度的单分子定位显微镜成像,和(ii)超分辨率径向波动。后者可以容忍更高的探针浓度和更低的成像功率,因为它利用了随机加合物的解离。使用 cyanoAcroB 进行超分辨成像表明,亲电试剂的烷基化在线粒体和内质网中很普遍。通过对 cyanoAcroB 进行连续成像数十分钟,以数十纳米的空间和亚秒级的时间分辨率揭示了单个细胞内这些细胞器的 2D 动力学。我们的工作强调了具有生物启发弹头的可逆荧光探针为在活细胞中用超分辨特征阐明化学反应带来的机遇。

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