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Engineering Novel Molecular Beacon Constructs to Study Intracellular RNA Dynamics and Localization

机译:工程新型分子信标构建体以研究细胞内RNA动力学和定位

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With numerous advancements in novel biochemical techniques, our knowledge of the role of RNAs in the regulation of cellular physiology and pathology has grown significantly over the past several decades. Nevertheless, detailed information regarding RNA processing, trafficking, and localization in living cells has been lacking due to technical limitations in imaging single RNA transcripts in living cells with high spatial and temporal resolution. In this review, we discuss techniques that have shown great promise for single RNA imaging, followed by highlights in our recent work in the development of molecular beacons (MBs), a class of nanoscale oligonucleotide-probes, for detecting individual RNA transcripts in living cells. With further refinement of MB design and development of more sophisticated fluorescence microscopy techniques, we envision that MB-based approaches could promote new discoveries of RNA functions and activities.
机译:随着新型生化技术的大量进步,在过去的几十年中,我们对RNA在细胞生理学和病理学调控中的作用的了解已大大增加。然而,由于在以高时空分辨率对活细胞中的单个RNA转录物进行成像方面的技术限制,一直缺乏关于活细胞中RNA加工,运输和定位的详细信息。在这篇综述中,我们讨论了对单RNA成像显示出巨大希望的技术,随后是我们最近在分子信标(MBs)(一类纳米级寡核苷酸探针)的开发中的亮点,用于检测活细胞中的单个RNA转录本。随着MB设计的进一步完善和更复杂的荧光显微镜技术的发展,我们设想基于MB的方法可以促进RNA功能和活性的新发现。

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