Department of Chemistry, School of Science, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
ACS Sens. 2023 Nov 24;8(11):4055-4063. doi: 10.1021/acssensors.3c01080. Epub 2023 Oct 27.
The intracellular distribution and dynamics of RNAs play pivotal roles in various physiological phenomena. The ability to monitor the amount and localization of endogenous RNAs in living cells allows for elucidating the mechanisms of various intracellular events. Protein-based fluorescent RNA probes are now widely used to visualize and analyze RNAs in living cells. However, continuously monitoring the temporal changes in RNA localization and dynamics in living cells is challenging. In this study, we developed a bioluminescent probe for spatiotemporal monitoring of RNAs in living cells by using a split-luciferase reconstitution technique. The probe consists of split fragments of a bioluminescent protein, NanoLuc, connected with RNA-binding protein domains generated from a custom-made mutation of a PUM-HD. The probe showed rapid luminescence intensity changes in response to an increase or decrease in the amount of a target RNA . In live-cell imaging, temporal alteration of the intracellular distribution of endogenous β-actin mRNA was visualized in response to extracellular stimulation. Furthermore, the application of the probe to the visualization of the specific localization of β-actin mRNA in primary hippocampal neurons was conducted. These results demonstrate the capability of the bioluminescent RNA probe to monitor the changes in localization, dynamics, and the amount of target RNA in living cells.
RNA 的细胞内分布和动态在各种生理现象中起着关键作用。能够在活细胞中监测内源性 RNA 的数量和定位,有助于阐明各种细胞内事件的机制。基于蛋白质的荧光 RNA 探针现在被广泛用于在活细胞中可视化和分析 RNA。然而,持续监测活细胞中 RNA 定位和动态的时间变化具有挑战性。在这项研究中,我们开发了一种利用分裂荧光酶重组技术在活细胞中进行 RNA 时空监测的生物发光探针。该探针由生物发光蛋白 NanoLuc 的分裂片段组成,通过对 PUM-HD 的自定义突变生成的 RNA 结合蛋白结构域连接。该探针在响应靶 RNA 量的增加或减少时显示出快速的发光强度变化。在活细胞成像中,可视化了细胞内内源性 β-肌动蛋白 mRNA 分布的时间变化,以响应细胞外刺激。此外,还进行了该探针在原代海马神经元中 β-肌动蛋白 mRNA 特异性定位可视化中的应用。这些结果表明,生物发光 RNA 探针能够监测活细胞中靶 RNA 的定位、动态和数量变化。