Takakura Hideo, Zhang Yongdeng, Erdmann Roman S, Thompson Alexander D, Lin Yu, McNellis Brian, Rivera-Molina Felix, Uno Shin-Nosuke, Kamiya Mako, Urano Yasuteru, Rothman James E, Bewersdorf Joerg, Schepartz Alanna, Toomre Derek
Department of Cell Biology, Yale University School of Medicine, New Haven, Connecticut, USA.
Department of Chemistry, Yale University, New Haven, Connecticut, USA.
Nat Biotechnol. 2017 Aug;35(8):773-780. doi: 10.1038/nbt.3876. Epub 2017 Jul 3.
Imaging cellular structures and organelles in living cells by long time-lapse super-resolution microscopy is challenging, as it requires dense labeling, bright and highly photostable dyes, and non-toxic conditions. We introduce a set of high-density, environment-sensitive (HIDE) membrane probes, based on the membrane-permeable silicon-rhodamine dye HMSiR, that assemble in situ and enable long time-lapse, live-cell nanoscopy of discrete cellular structures and organelles with high spatiotemporal resolution. HIDE-enabled nanoscopy movies span tens of minutes, whereas movies obtained with labeled proteins span tens of seconds. Our data reveal 2D dynamics of the mitochondria, plasma membrane and filopodia, and the 2D and 3D dynamics of the endoplasmic reticulum, in living cells. HIDE probes also facilitate acquisition of live-cell, two-color, super-resolution images, expanding the utility of nanoscopy to visualize dynamic processes and structures in living cells.
通过长时间延时超分辨率显微镜对活细胞中的细胞结构和细胞器进行成像具有挑战性,因为这需要密集标记、明亮且高度光稳定的染料以及无毒条件。我们基于可透过细胞膜的硅罗丹明染料HMSiR引入了一组高密度、环境敏感(HIDE)膜探针,这些探针可原位组装,并能够以高时空分辨率对离散的细胞结构和细胞器进行长时间延时活细胞纳米显微镜观察。启用HIDE的纳米显微镜成像视频跨度可达数十分钟,而用标记蛋白质获得的成像视频跨度仅数十秒。我们的数据揭示了活细胞中线粒体、质膜和丝状伪足的二维动力学,以及内质网的二维和三维动力学。HIDE探针还便于获取活细胞双色超分辨率图像,扩展了纳米显微镜在可视化活细胞动态过程和结构方面的应用。