通过荧光光亲和标记在活的哺乳动物细胞中成像和跟踪RNA

IF 3.8 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Alexandria L. Quillin, Diane B. Karloff, Tewoderos M. Ayele, Tatiana F. Flores, Gerry Chen, Zachary T. McEachin, Arielle N. Valdez-Sinon and Jennifer M. Heemstra*, 
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引用次数: 0

摘要

近年来,利用发光适体结合并激活荧光分子的细胞RNA标记作为基于蛋白质的RNA标记方法的替代方法获得了人们的兴趣。基于适体体的系统是基因可编码的,覆盖了整个可见光谱。然而,非共价适体-氟相互作用固有的暂时性限制了这些系统的效用,因为成像不能承受染料冲洗,染料解离会损害RNA跟踪。我们建议可以通过共价RNA标记来避免这些限制。在这里,我们描述了一种光亲和性方法,其中适配体配体被光激活的重氮嘧啶反应基团功能化,这样用紫外线照射会导致与感兴趣的RNA的共价附着。除了共价连锁的稳健性外,这种方法还受益于实现对RNA标记的时空控制的能力。为了证明这种方法,我们将一个光亲和连接体整合到孔雀石绿中,并将孔雀石绿适体的一个拷贝与Cajal体相关的小核RNA以及细胞质mRNA融合。我们观察到在紫外线照射下靶RNA的活细胞成像灵敏度的提高,并在几分钟的时间尺度上展示了RNA动力学的可视化。共价附着独特地实现了这些时间分辨实验,而在非共价方法中,染料分子可以在不同的RNA分子之间转移,从而影响跟踪。我们展望了这种方法在未来广泛应用于细胞rna的细胞定位、动力学和蛋白质结合特性的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Imaging and Tracking RNA in Live Mammalian Cells via Fluorogenic Photoaffinity Labeling

Imaging and Tracking RNA in Live Mammalian Cells via Fluorogenic Photoaffinity Labeling

Cellular RNA labeling using light-up aptamers that bind to and activate fluorogenic molecules has gained interest in recent years as an alternative to protein-based RNA labeling approaches. Aptamer-based systems are genetically encodable and cover the entire visible spectrum. However, the inherently temporary nature of the noncovalent aptamer–fluorogen interaction limits the utility of these systems in that imaging does not withstand dye washout, and dye dissociation can compromise RNA tracking. We propose that these limitations can be averted through covalent RNA labeling. Here, we describe a photoaffinity approach in which the aptamer ligand is functionalized with a photoactivatable diazirine reactive group such that irradiation with UV light results in covalent attachment to the RNA of interest. In addition to the robustness of the covalent linkage, this approach benefits from the ability to achieve spatiotemporal control over RNA labeling. To demonstrate this approach, we incorporated a photoaffinity linker into malachite green and fused a single copy of the malachite green aptamer to a Cajal body-associated small nuclear RNA of interest as well as a cytoplasmic mRNA. We observed improved sensitivity for live cell imaging of the target RNA upon UV irradiation and demonstrated visualization of RNA dynamics over a time scale of minutes. The covalent attachment uniquely enables these time-resolved experiments, whereas in noncovalent approaches, the dye molecule can be transferred between different RNA molecules, compromising tracking. We envision future applications of this method for a wide range of investigations into the cellular localization, dynamics, and protein-binding properties of cellular RNAs.

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来源期刊
ACS Chemical Biology
ACS Chemical Biology 生物-生化与分子生物学
CiteScore
7.50
自引率
5.00%
发文量
353
审稿时长
3.3 months
期刊介绍: ACS Chemical Biology provides an international forum for the rapid communication of research that broadly embraces the interface between chemistry and biology. The journal also serves as a forum to facilitate the communication between biologists and chemists that will translate into new research opportunities and discoveries. Results will be published in which molecular reasoning has been used to probe questions through in vitro investigations, cell biological methods, or organismic studies. We welcome mechanistic studies on proteins, nucleic acids, sugars, lipids, and nonbiological polymers. The journal serves a large scientific community, exploring cellular function from both chemical and biological perspectives. It is understood that submitted work is based upon original results and has not been published previously.
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