Autonomous Matter Department, AMOLF, Amsterdam, The Netherlands.
Max Planck Institute of Biochemistry, Martinsried, Germany.
Nat Commun. 2023 Jul 19;14(1):4345. doi: 10.1038/s41467-023-40065-8.
DNA-PAINT based single-particle tracking (DNA-PAINT-SPT) has recently significantly enhanced observation times in in vitro SPT experiments by overcoming the constraints of fluorophore photobleaching. However, with the reported implementation, only a single target can be imaged and the technique cannot be applied straight to live cell imaging. Here we report on leveraging this technique from a proof-of-principle implementation to a useful tool for the SPT community by introducing simultaneous live cell dual-color DNA-PAINT-SPT for quantifying protein dimerization and tracking proteins in living cell membranes, demonstrating its improved performance over single-dye SPT.
基于 DNA 点样的单粒子追踪 (DNA-PAINT-SPT) 最近通过克服荧光团光漂白的限制,显著提高了体外 SPT 实验中的观察时间。然而,根据报道的实施方案,只能对单个靶标进行成像,并且该技术不能直接应用于活细胞成像。在这里,我们通过引入同时进行活细胞双色 DNA-PAINT-SPT 来证明该技术从原理验证实施到 SPT 社区的有用工具的转变,从而实现对蛋白质二聚化的定量和活细胞膜中蛋白质的追踪,展示了其优于单染料 SPT 的性能。