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Quantification and real-time tracking of RNA in live cells using Sticky-flares.


ABSTRACT: We report a novel spherical nucleic acid (SNA) gold nanoparticle conjugate, termed the Sticky-flare, which enables facile quantification of RNA expression in live cells and spatiotemporal analysis of RNA transport and localization. The Sticky-flare is capable of entering live cells without the need for transfection agents and recognizing target RNA transcripts in a sequence-specific manner. On recognition, the Sticky-flare transfers a fluorophore-conjugated reporter to the transcript, resulting in a turning on of fluorescence in a quantifiable manner and the fluorescent labeling of targeted transcripts. The latter allows the RNA to be tracked via fluorescence microscopy as it is transported throughout the cell. We use this novel nanoconjugate to analyze the expression level and spatial distribution of ?-actin mRNA in HeLa cells and to observe the real-time transport of ?-actin mRNA in mouse embryonic fibroblasts. Furthermore, we investigate the application of Sticky-flares for tracking transcripts that undergo more extensive compartmentalization by fluorophore-labeling U1 small nuclear RNA and observing its distribution in the nucleus of live cells.

SUBMITTER: Briley WE 

PROVIDER: S-EPMC4534211 | biostudies-literature | 2015 Aug

REPOSITORIES: biostudies-literature

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Quantification and real-time tracking of RNA in live cells using Sticky-flares.

Briley William E WE   Bondy Madison H MH   Randeria Pratik S PS   Dupper Torin J TJ   Mirkin Chad A CA  

Proceedings of the National Academy of Sciences of the United States of America 20150720 31


We report a novel spherical nucleic acid (SNA) gold nanoparticle conjugate, termed the Sticky-flare, which enables facile quantification of RNA expression in live cells and spatiotemporal analysis of RNA transport and localization. The Sticky-flare is capable of entering live cells without the need for transfection agents and recognizing target RNA transcripts in a sequence-specific manner. On recognition, the Sticky-flare transfers a fluorophore-conjugated reporter to the transcript, resulting  ...[more]

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