Individual mRNA molecules can be imaged in fixed cells by hybridization with multiple, singly labeled oligonucleotide probes, followed by computational identification of fluorescent signals. This approach, called single-molecule RNA fluorescence in situ hybridization (smRNA FISH), allows subcellular localization and absolute quantification of RNA molecules in individual cells. Here, we describe a simple smRNA FISH protocol for two-color imaging of a circular RNA, CDR1as, simultaneously with an unrelated messenger RNA. The protocol can be adapted to circRNAs that coexist with overlapping, noncircular mRNA isoforms produced from the same genetic locus
Single mRNA molecules are frequently detected by single molecule fluorescence in situ hybridization ...
abstract: Currently, quantification of single cell RNA species in their natural contexts is restrict...
International audienceSingle molecule FISH (smFISH) allows studying transcription and RNA localizati...
Single-molecule RNA fl uorescence in situ hybridization is a technique that holds great potential fo...
Fluorescence in situ hybridization (FISH) and digital imaging microscopy were modified to allow dete...
Circular RNAs (circRNAs) are regulatory RNAs which have recently been shown to have clinical signifi...
Fluorescence in situ hybridization (FISH) and digital imaging microscopy were modified to allow dete...
This protocol describes a method to image individual mRNA molecules in situ. About 50 oligonucleotid...
International audienceSingle molecule FISH (smFISH) allows studying transcription and RNA localizati...
International audienceSingle molecule FISH (smFISH) allows studying transcription and RNA localizati...
International audienceSingle molecule FISH (smFISH) allows studying transcription and RNA localizati...
Single molecule FISH (smFISH) allows studying transcription and RNA localization by imaging individu...
In situ detection of RNAs is becoming increasingly importantfor analysis of gene expression within a...
International audienceSingle molecule FISH (smFISH) allows studying transcription and RNA localizati...
Single molecule FISH (smFISH) allows studying transcription and RNA localization by imaging individu...
Single mRNA molecules are frequently detected by single molecule fluorescence in situ hybridization ...
abstract: Currently, quantification of single cell RNA species in their natural contexts is restrict...
International audienceSingle molecule FISH (smFISH) allows studying transcription and RNA localizati...
Single-molecule RNA fl uorescence in situ hybridization is a technique that holds great potential fo...
Fluorescence in situ hybridization (FISH) and digital imaging microscopy were modified to allow dete...
Circular RNAs (circRNAs) are regulatory RNAs which have recently been shown to have clinical signifi...
Fluorescence in situ hybridization (FISH) and digital imaging microscopy were modified to allow dete...
This protocol describes a method to image individual mRNA molecules in situ. About 50 oligonucleotid...
International audienceSingle molecule FISH (smFISH) allows studying transcription and RNA localizati...
International audienceSingle molecule FISH (smFISH) allows studying transcription and RNA localizati...
International audienceSingle molecule FISH (smFISH) allows studying transcription and RNA localizati...
Single molecule FISH (smFISH) allows studying transcription and RNA localization by imaging individu...
In situ detection of RNAs is becoming increasingly importantfor analysis of gene expression within a...
International audienceSingle molecule FISH (smFISH) allows studying transcription and RNA localizati...
Single molecule FISH (smFISH) allows studying transcription and RNA localization by imaging individu...
Single mRNA molecules are frequently detected by single molecule fluorescence in situ hybridization ...
abstract: Currently, quantification of single cell RNA species in their natural contexts is restrict...
International audienceSingle molecule FISH (smFISH) allows studying transcription and RNA localizati...