Laboratory of Organic Chemistry, ETH Zurich, 8093 Zurich, Switzerland.
Institute of Chemical Sciences and Engineering, EPF Lausanne, 1015 Lausanne, Switzerland.
ACS Chem Biol. 2020 Sep 18;15(9):2597-2604. doi: 10.1021/acschembio.0c00639. Epub 2020 Aug 31.
Photoactivatable dyes enable single-molecule imaging and tracking in biology. Despite progress in the development of new fluorophores and labeling strategies, many intracellular compartments remain difficult to image beyond the limit of diffraction in living cells. For example, lipid domains, e.g., membranes and droplets, remain difficult to image with nanometric resolution. To visualize these challenging subcellular targets, it is necessary to develop new fluorescent molecular devices beyond simple on/off switches. Here, we report a fluorogenic molecular logic gate that can be used to image single molecules associated with lipid domains, most notably droplets, with excellent specificity. This probe requires the subsequent action of light, a lipophilic environment, and a competent nucleophile to produce a fluorescent product. The combination of these inputs results in a probe that can be used to image the boundary of lipid droplets in three dimensions with resolution beyond the limit of diffraction. Moreover, this probe enables single-molecule tracking of lipid trafficking between droplets and the endoplasmic reticulum.
光活化染料使单分子成像和追踪成为可能。尽管在开发新的荧光团和标记策略方面取得了进展,但许多细胞内隔室仍然难以在活细胞的衍射极限之外成像。例如,脂质域,例如膜和液滴,仍然难以以纳米级分辨率成像。为了可视化这些具有挑战性的亚细胞靶标,有必要开发超越简单开/关开关的新型荧光分子器件。在这里,我们报告了一种荧光分子逻辑门,可以用于以优异的特异性对与脂质域(尤其是液滴)相关的单个分子进行成像。该探针需要光、亲脂环境和有能力的亲核试剂的后续作用才能产生荧光产物。这些输入的组合产生了一种探针,可用于以超出衍射极限的分辨率对脂质滴的边界进行三维成像。此外,该探针还可以实现脂质在液滴和内质网之间运输的单分子追踪。