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Analysis of Single-cell Gene Transcription by RNA Fluorescent In Situ Hybridization (FISH)
Published on: October 7, 2012
Changes in var gene mRNA levels during erythrocytic development in two phenotypically distinct Plasmodium falciparum
Madeleine Dahlbäck1, Thomas Lavstsen, Ali Salanti
1Centre for Medical Parasitology at Department of International Health, Immunology and Microbiology, University of Copenhagen and Department of Infectious Diseases, Copenhagen University Hospital (Rigshospitalet), Copenhagen, Denmark. dahlback@cmp.dk
Background:
The var multigene family encodes PfEMP1, which are expressed on the surface of infected erythrocytes and bind to various host endothelial receptors. Antigenic variation of PfEMP1 plays a key role in malaria pathogenesis, a process partially controlled at the level of var gene transcription. Transcriptional levels, throughout the intra-erythrocytic cycle, of 59 var genes of the NF54 clone were measured simultaneously by quantitative real-time PCR. The timing of var transcript abundance, the number of genes transcribed and whether transcripts were correctly spliced for protein expression were determined. Two parasite populations were studied; an unselected population of NF54 and a selected population, NF54VAR2CSA, to compare both the transcription of var2csa and the expression pattern of the corresponding protein.
Methods:
Synchronized parasites were harvested at different time points along the 48 hours intra-erythrocytic cycle for extraction of RNA and for analysis of expression of variant surface antigens by flow cytometry. Total RNA from each parasite sample was extracted and cDNA synthesized. Quantitative real-time PCR was performed using gene-specific primers for all var genes. Samples for flow cytometry were labelled with rabbit IgG targeting DBL5epsilon of VAR2CSA and serum IgG from malaria-exposed men and pregnant women.
Results:
var transcripts were detected at all time points of the intra-erythrocytic cycle by quantitative real-time PCR, although transcription peaked in ring-stage parasites. There was no difference in the timing of appearance of group A, B or C transcripts, and dominant and subdominant var transcripts appeared to be correctly spliced at all time points. VAR2CSA appeared on the surface of infected erythrocytes 16 hours after invasion, consistent with previous studies of other PfEMP1. Transcription of the pseudogene var1csa could not be detected in NF54VAR2CSA cells.
Conclusion:
The optimal sampling point for analysis of var transcripts using quantitative real-time PCR is the ring-stage, which is encouraging for the analysis of fresh clinical isolates. The data presented here indicate that there is no promiscuous transcription of var genes at the individual cell level and that it is possible to correlate dominant transcripts with adhesion phenotype and clinical markers of malaria severity.
Insights
Malaria parasite var gene transcription peaks during the ring stage, with no evidence of promiscuous gene expression. This finding supports using the ring stage for analyzing clinical isolates and correlating gene transcripts with disease severity.
Area of Science:
- Molecular parasitology
- Genomics
- Malariology
Background:
- The var multigene family encodes PfEMP1 proteins, crucial for malaria pathogenesis via binding to host receptors.
- Antigenic variation of PfEMP1, controlled by var gene transcription, is key in malaria.
- Understanding var gene transcription dynamics is vital for malaria control strategies.
Purpose of the Study:
- To measure transcriptional levels of 59 var genes throughout the intra-erythrocytic cycle in Plasmodium falciparum.
- To determine the timing of var transcript abundance, the number of transcribed genes, and splicing for protein expression.
- To compare var gene transcription between unselected (NF54) and VAR2CSA-selected (NF54VAR2CSA) parasite populations.
Main Methods:
- Quantitative real-time PCR was used to measure var gene transcription across the 48-hour intra-erythrocytic cycle.
- RNA was extracted from synchronized parasites at various time points.
- Flow cytometry analyzed variant surface antigen expression, specifically targeting VAR2CSA.
Main Results:
- var transcripts were detected throughout the cycle, with peak abundance during the ring stage.
- No differences were observed in the timing of group A, B, or C transcripts; dominant and subdominant transcripts were correctly spliced.
- VAR2CSA surface expression occurred 16 hours post-invasion; var1csa transcription was undetectable in NF54VAR2CSA cells.
Conclusions:
- The ring stage is the optimal sampling point for analyzing var transcripts in clinical isolates.
- Var gene transcription is not promiscuous at the individual cell level.
- Dominant var transcripts can be correlated with adhesion phenotypes and malaria severity markers.
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