Single molecule FISH (smFISH) allows studying transcription and RNA localization by imaging individual mRNAs in single cells. We present smiFISH (single molecule inexpensive FISH), an easy to use and flexible RNA visualization and quantification approach that uses unlabelled primary probes and a fluorescently labelled secondary detector oligonucleotide. The gene-specific probes are unlabelled and can therefore be synthesized at low cost, thus allowing to use more probes per mRNA resulting in a substantial increase in detection efficiency. smiFISH is also flexible since differently labelled secondary detector probes can be used with the same primary probes. We demonstrate that this flexibility allows multicolor labelling without the need to ...
Regulation of RNA abundance and localization is a key step in gene expression control. Single-molecu...
Regulation of RNA abundance and localization is a key step in gene expression control. Single-molecu...
Summary: Single-molecule RNA fluorescence in situ hybridization (smFISH) allows subcellular visualiz...
Single molecule FISH (smFISH) allows studying transcription and RNA localization by imaging individu...
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...
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...
International audienceSingle molecule FISH (smFISH) allows studying transcription and RNA localizati...
International audienceThe ability to visualize RNA in its native subcellular environment by using si...
International audienceRegulation of RNA abundance and localization is a key step in gene expression ...
International audienceRegulation of RNA abundance and localization is a key step in gene expression ...
Regulation of RNA abundance and localization is a key step in gene expression control. Single-molecu...
Regulation of RNA abundance and localization is a key step in gene expression control. Single-molecu...
Regulation of RNA abundance and localization is a key step in gene expression control. Single-molecu...
Summary: Single-molecule RNA fluorescence in situ hybridization (smFISH) allows subcellular visualiz...
Single molecule FISH (smFISH) allows studying transcription and RNA localization by imaging individu...
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...
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...
International audienceSingle molecule FISH (smFISH) allows studying transcription and RNA localizati...
International audienceThe ability to visualize RNA in its native subcellular environment by using si...
International audienceRegulation of RNA abundance and localization is a key step in gene expression ...
International audienceRegulation of RNA abundance and localization is a key step in gene expression ...
Regulation of RNA abundance and localization is a key step in gene expression control. Single-molecu...
Regulation of RNA abundance and localization is a key step in gene expression control. Single-molecu...
Regulation of RNA abundance and localization is a key step in gene expression control. Single-molecu...
Summary: Single-molecule RNA fluorescence in situ hybridization (smFISH) allows subcellular visualiz...