Related Experiment Video
Updated: May 17, 2026

Analysis of Single-cell Gene Transcription by RNA Fluorescent In Situ Hybridization (FISH)
Published on: October 7, 2012
Analysis of single-cell gene transcription by RNA fluorescent in situ hybridization (FISH)
Elena Ronander1, Dominique C Bengtsson, Louise Joergensen
1Centre for Medical Parasitology, Department of International Health, Immunology & Microbiology, University of Copenhagen, Copenhagen. elenar@sund.ku.dk
Abstract:
Adhesion of Plasmodium falciparum infected erythrocytes (IE) to human endothelial receptors during malaria infections is mediated by expression of PfEMP1 protein variants encoded by the var genes. The haploid P. falciparum genome harbors approximately 60 different var genes of which only one has been believed to be transcribed per cell at a time during the blood stage of the infection. How such mutually exclusive regulation of var gene transcription is achieved is unclear, as is the identification of individual var genes or sub-groups of var genes associated with different receptors and the consequence of differential binding on the clinical outcome of P. falciparum infections. Recently, the mutually exclusive transcription paradigm has been called into doubt by transcription assays based on individual P. falciparum transcript identification in single infected erythrocytic cells using RNA fluorescent in situ hybridization (FISH) analysis of var gene transcription by the parasite in individual nuclei of P. falciparum IE(1). Here, we present a detailed protocol for carrying out the RNA-FISH methodology for analysis of var gene transcription in single-nuclei of P. falciparum infected human erythrocytes. The method is based on the use of digoxigenin- and biotin- labeled antisense RNA probes using the TSA Plus Fluorescence Palette System(2) (Perkin Elmer), microscopic analyses and freshly selected P. falciparum IE. The in situ hybridization method can be used to monitor transcription and regulation of a variety of genes expressed during the different stages of the P. falciparum life cycle and is adaptable to other malaria parasite species and other organisms and cell types.
Insights
This study details a RNA-FISH protocol to analyze var gene transcription in Plasmodium falciparum infected erythrocytes. This method helps understand mutually exclusive gene expression in malaria parasites and its clinical implications.
Area of Science:
- Malariology
- Molecular Parasitology
- Genetics
Background:
- Adhesion of Plasmodium falciparum infected erythrocytes to endothelial receptors is mediated by PfEMP1 proteins, encoded by var genes.
- The P. falciparum genome has ~60 var genes, with only one believed to be transcribed per cell during the blood stage.
- The mechanism of mutually exclusive var gene transcription and its clinical impact remain unclear.
Purpose of the Study:
- To present a detailed protocol for RNA-FISH methodology to analyze var gene transcription in single Plasmodium falciparum infected erythrocyte nuclei.
- To investigate the regulation of var gene transcription and its association with receptor binding and clinical outcomes.
Main Methods:
- Utilized RNA fluorescent in situ hybridization (RNA-FISH) for analyzing var gene transcription in single parasite nuclei.
- Employed digoxigenin- and biotin-labeled antisense RNA probes with the TSA Plus Fluorescence Palette System.
- Included microscopic analysis of freshly selected P. falciparum infected erythrocytes.
Main Results:
- Established a detailed RNA-FISH protocol for analyzing var gene transcription in single P. falciparum infected erythrocyte nuclei.
- Demonstrated the utility of the method for monitoring transcription and regulation of various genes.
- Showcased adaptability for other malaria parasite species and cell types.
Conclusions:
- The RNA-FISH method provides a robust approach to study var gene transcription in Plasmodium falciparum.
- This technique can elucidate the regulation of mutually exclusive gene expression and its role in malaria pathogenesis.
- The protocol is adaptable for broader applications in parasite gene expression studies.
Related Concept Videos
FISH - Fluorescent In-situ Hybridization
In-situ Hybridization
Types of probes and labels
A probe is a complementary strand of DNA or RNA that binds to corresponding nucleotide sequences in a cell. Many...

