Basic Research Program, Frederick National Laboratory for Cancer Research, Argonne, Illinois 60439, United States.
Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Moscow 117997, Russian Federation.
ACS Chem Biol. 2020 Sep 18;15(9):2456-2465. doi: 10.1021/acschembio.0c00440. Epub 2020 Sep 8.
Super-resolution fluorescent imaging in living cells remains technically challenging, largely due to the photodecomposition of fluorescent tags. The recently suggested protein-PAINT is the only super-resolution technique available for prolonged imaging of proteins in living cells. It is realized with complexes of fluorogen-activating proteins, expressed as fusions, and solvatochromic synthetic dyes. Once photobleached, the dye in the complex is replaced with a fresh fluorogen available in the sample. With suitable kinetics, this replacement creates fluorescence blinking required for attaining super-resolution and overcomes photobleaching associated with the loss of an irreplaceable fluorophore. Here we report on the rational design of two protein-PAINT tags based on the 1.58 Å crystal structure of the DiB1:M739 complex, an improved green-emitting DiB3/F74V:M739 and a new orange-emitting DiB3/F53L:M739. They outperform previously reported DiB-based tags to become best in class biomarkers for protein-PAINT. The new tags advance protein-PAINT from the proof-of-concept to a reliable tool suitable for prolonged super-resolution imaging of intracellular proteins in fixed and living cells and two-color PAINT-like nanoscopy with a single fluorogen.
活细胞中的超分辨率荧光成像是一项具有挑战性的技术,主要是因为荧光标记物的光解。最近提出的蛋白质 PAINT 是唯一可用于活细胞中蛋白质长时间成像的超分辨率技术。它是通过表达融合的荧光团激活蛋白复合物和溶剂化变色合成染料来实现的。一旦光漂白,复合物中的染料就会被样品中可用的新鲜荧光团取代。通过合适的动力学,这种取代会产生实现超分辨率所需的荧光闪烁,并克服与不可替代荧光团损失相关的光漂白。在这里,我们根据 DiB1:M739 复合物的 1.58 Å 晶体结构,报告了两种蛋白质 PAINT 标签的合理设计,一种是改进的绿色发射 DiB3/F74V:M739,另一种是新的橙色发射 DiB3/F53L:M739。它们优于以前报道的基于 DiB 的标签,成为蛋白质 PAINT 的最佳生物标志物。新标签将蛋白质 PAINT 从概念验证推进到可靠的工具,适用于固定和活细胞中细胞内蛋白质的长时间超分辨率成像,以及使用单个荧光团进行双色 PAINT 样纳米显微镜。