Rna Visualization

RNA visualization is the detection and spatial mapping of RNA molecules in cells, tissues, or biochemical samples, providing a way to connect RNA abundance with gene regulation and cellular function. In common fluorescence-based approaches, labeled nucleic-acid probes hybridize to complementary RNA sequences, and microscopy records the resulting signal; engineered RNA tags can instead recruit fluorescent-binding proteins for live-cell imaging. These methods reveal transcript localization, synthesis, transport, stability, and interactions with proteins or other RNAs. In biochemistry, RNA visualization supports studies of post-transcriptional regulation, RNA processing, and disease-associated changes, while quantitative imaging can compare expression patterns and dynamics across experimental conditions.

Rna Visualization - Related Videos

Research

JoVE Journal - Biology

Visualizing RNA Localization in Xenopus Oocytes

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Cited by 5 •

2010

Visualization of in vivo RNA transport is accomplished by microinjection of fluorescently labeled RNA transcripts into Xenopus oocytes, followed by confocal microscopy.

Research

JoVE Journal - Biology
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Visualization and Quantification of Intermolecular RNA Base Pairing in in vitro RNA Clusters Using Split Broccoli RNA Reporters

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2026

This protocol describes a visual assay using split Broccoli RNA reporters to detect and quantify intermolecular base pairing in RNA clusters in vitro.

Using Immuno-RNA Fluorescence In Situ Hybridization to Visualize SARS-CoV-2

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2025

This video demonstrates the application of Hybridization Chain Reaction (HCR)-Fluorescence In Situ Hybridization (FISH) for visualizing the spatial distribution of SARS-CoV-2 subgenomic RNA. Combining HCR with immunofluorescence techniques has the potential to provide insights into host-virus interactions at the single-cell level.

Mapping RNA-RNA Interactions Globally Using Biotinylated Psoralen

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Cited by 20 •

2017

Here, we detail the method of Sequencing of Psoralen crosslinked, Ligated, and Selected Hybrids (SPLASH), which enables genome-wide mapping of intramolecular and intermolecular RNA-RNA interactions in vivo. SPLASH can be applied to study RNA interactomes of organisms including yeast, bacteria and humans.

Nanomanipulation of Single RNA Molecules by Optical Tweezers

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Cited by 13 •

2014

Optical tweezers have been used to study RNA folding by stretching individual molecules from their 5’ and 3’ ends. Here common procedures are described to synthesize RNA molecules for tweezing, calibration of the instrument, and methods to manipulate single molecules.

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