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Methods to Investigate the Regulatory Role of Small RNAs and Ribosomal Occupancy of Plasmodium falciparum
Published on: December 4, 2015
Host and Parasite Transcriptomic Changes upon Successive Plasmodium falciparum Infections in Early Childhood
Katie R Bradwell1, Drissa Coulibaly2, Abdoulaye K Koné2
1Institute for Genome Sciences, University of Maryland School of Medicine, Baltimore, Maryland, USA.
Insights
Dual RNA sequencing of blood from children with malaria reveals host and Plasmodium falciparum gene expression patterns. This approach helps understand immunity acquisition and parasite adaptation during successive infections.
Area of Science:
- Immunology
- Genomics
- Infectious Diseases
Background:
- Children in malaria-endemic regions develop immunity through successive Plasmodium falciparum infections.
- Understanding host-parasite interactions is key to deciphering gradual immunity acquisition and parasite adaptation.
Purpose of the Study:
- To present methods for analyzing host and parasite gene expression from blood samples during sequential malaria infections.
- To investigate host-parasite gene coexpression and parasite adaptation in malaria-experienced hosts.
Main Methods:
- Simultaneous RNA sequencing (RNA-seq) of host and Plasmodium falciparum from blood samples of three Malian children across five infections.
- Analysis of white blood cell subsets, parasite developmental stages, host-parasite gene coexpression, and allelic variations.
- Assessment of infection complexity and host/parasite gene expression profiles.
Main Results:
- Dual RNA-seq data enabled statistical assessment of cellular and parasite populations.
- Host gene expression profiles largely clustered by individual, while parasite profiles differentiated early from late infections.
- Identified allelic variations and determined infection complexity.
Conclusions:
- Dual RNA-seq provides a robust framework for studying the mechanisms of malaria immunity acquisition.
- This method facilitates the examination of Plasmodium falciparum adaptations to hosts with increasing malaria experience.
Abstract:
Children are highly susceptible to clinical malaria, and in regions where malaria is endemic, their immune systems must face successive encounters with Plasmodium falciparum parasites before they develop immunity, first against severe disease and later against uncomplicated malaria. Understanding cellular and molecular interactions between host and parasites during an infection could provide insights into the processes underlying this gradual acquisition of immunity, as well as to how parasites adapt to infect hosts that are successively more malaria experienced. Here, we describe methods to analyze the host and parasite gene expression profiles generated simultaneously from blood samples collected from five consecutive symptomatic P. falciparum infections in three Malian children. We show that the data generated enable statistical assessment of the proportions of (i) each white blood cell subset and (ii) the parasite developmental stages, as well as investigations of host-parasite gene coexpression. We also use the sequences generated to analyze allelic variations in transcribed regions and determine the complexity of each infection. While limited by the modest sample size, our analyses suggest that host gene expression profiles primarily clustered by individual, while the parasite gene expression profiles seemed to differentiate early from late infections. Overall, this study provides a solid framework to examine the mechanisms underlying acquisition of immunity to malaria infections using whole-blood transcriptome sequencing (RNA-seq).IMPORTANCE We show that dual RNA-seq from patient blood samples allows characterization of host/parasite interactions during malaria infections and can provide a solid framework to study the acquisition of antimalarial immunity, as well as the adaptations of P. falciparum to malaria-experienced hosts.
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