BioFrontiers Institute, University of Colorado at Boulder, Boulder, CO, USA.
Department of Experimental and Health Sciences, Universitat Pompeu Fabra, Barcelona, Spain; Advanced Light Microscopy Unit, Center for Genomic Regulation, Barcelona, Spain.
Methods. 2021 Mar;187:68-76. doi: 10.1016/j.ymeth.2020.04.009. Epub 2020 Apr 30.
Super resolution microscopy has changed our capability to visualize and understand spatial arrangements of RNA- and protein-containing domains in individual cells. In a previous study, we described a novel lncRNA, Tumor-associated NBL2 transcript (TNBL), which originates from a primate specific macrosatellite repeat. We aimed to describe several aspects of TNBL lncRNA, with one focus being pinpointing its precise location in the nucleus, as well as visualizing its interactions with proteins to deduce its functionality. Using a combination of STimulated Emission Depletion (STED) super resolution microscopy, single molecule RNA (smRNA) FISH against TNBL, and immunofluorescence against SAM68 perinucleolar body, we resolved the spatial complexity of the interaction between TNBL aggregates and SAM68 bodies at the perinucleolar region. Here, we describe protocols for a step-by-step optimized smRNA FISH/IF and STED imaging, detailing parameter settings, and three-dimensional data analysis of spatial positioning of subnuclear structures. These protocols can be employed for single-cell imaging of complex nuclear RNA-protein structures.
超分辨率显微镜改变了我们在单个细胞中可视化和理解 RNA 和蛋白质含量域的空间排列的能力。在之前的一项研究中,我们描述了一种新型的长非编码 RNA,肿瘤相关 NBL2 转录本(TNBL),它来源于灵长类动物特异性的大片段重复序列。我们旨在描述 TNBL lncRNA 的几个方面,其中一个重点是精确定位其在核内的位置,以及可视化其与蛋白质的相互作用,以推断其功能。我们使用组合的受激发射损耗(STED)超分辨率显微镜、针对 TNBL 的单分子 RNA(smRNA)荧光原位杂交(FISH)和针对核仁周体的 SAM68 的免疫荧光,解决了 TNBL 聚集物与核仁周体之间相互作用的空间复杂性。在这里,我们描述了 smRNA FISH/IF 和 STED 成像的逐步优化方案,详细说明了参数设置以及亚核结构空间定位的三维数据分析。这些方案可用于单个细胞中复杂核 RNA-蛋白质结构的成像。