Plasmodium falciparum population genetic complexity influences transcriptional profile and immune recognition of highly related genotypic clusters
Bei, A. K.; Larremore, D. B.; Miura, K.; Diouf, A.; Baro, N. K.; Daniels, R. F.; Griggs, A.; Moss, E. L.; Neafsey, D. E.; Deme, A. B.; Sy, M.; Schaffner, S.; Ahouidi, A. D.; Ndiaye, D.; Dieye, T.; Mboup, S.; Buckee, C. O.; Volkman, S. K.; Long, C. A.; Wirth, D. B.
Show abstract
As transmission intensity has declined in Senegal, so has the genetic complexity of circulating Plasmodium falciparum parasites, resulting in specific genotypes emerging and persisting over years. We address whether changes in parasite genetic signatures can alter the immune repertoire to variant surface antigens, and whether such responses can influence the expansion or contraction of specific parasite genotypes in the population. We characterize parasites within genotypic clusters, defined as identical by a 24-SNP molecular barcode and a haplotype identifier for other highly polymorphic loci; we measure expression of variant surface antigens (VSA) such as PfEMP-1 by transcript expression typing and expressed var DBL1 sequencing in ex vivo and short-term adapted RNA samples; and we measure IgG responses against VSAs from short-term adapted parasites. We find that parasites within genotypic clusters are genetically identical at other highly polymorphic loci. These parasites express similar Ups var classes and largely the same dominant var DBL1 sequences ex vivo. These parasites are recognized similarly by anti-VSA antibodies after short-term adaptation to culture; however, antibody responses do not correlate with genotype frequencies over time. Both genotype-specific and multiple genotype-reactive surface IgG responses are observed in this population. Parasites with identical genomes are extremely similar in their expression and host antibody recognition of VSAs. Monitoring changes in population-level parasite genomics and transmission dynamics is critical, as fluctuations will influence the breadth of resulting host immune responses to circulating parasite genotypes. These findings suggest shared immune recognition of genetically similar parasites, which has implications for both our understanding of immunity and vaccine development strategies in malaria elimination settings.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Plasmodium falciparum expresses fewer var genes at lower levels during asymptomatic dry season infections than clinical malaria cases 97%
- The exception that proves the rule: Virulence gene expression at the onset of Plasmodium falciparum blood stage infections 95%
- An apical protein, Pcr2, is required for persistent movement by the human parasite Toxoplasma gondii 95%
Similar papers in this journal
- VSGs expressed during natural T. b. gambiense infection exhibit extensive sequence divergence and a subspecies-specific expression bias 96%
- Expression patterns of Plasmodium falciparum clonally variant genes at the onset of a blood infection in non-immune humans 96%
- Plasmodium falciparum genetic diversity in coincident human and mosquito hosts 95%
Similar papers in this journal
- In vitro culture of freshly isolated Trypanosoma brucei brucei bloodstream forms results in gene copy-number changes. 95%
- Malian children infected with Plasmodium ovale and Plasmodium falciparum display very similar gene expression profiles. 94%
- Population Genomics of Plasmodium vivax in Panama to Assess the Risk of Case Importation on Malaria Elimination 94%
Similar papers in this journal
- Sensitive, highly multiplexed sequencing of microhaplotypes from the Plasmodium falciparum heterozygome 96%
- Amplicon sequencing reveals complex infection in infants congenitally infected with Trypanosoma cruzi and informs the dynamics of parasite transmission 95%
- A cohort study on the duration of Plasmodium falciparum infections during the dry season in The Gambia 94%
Similar papers in this journal
- Impact of sickle cell trait hemoglobin on the intraerythrocytic transcriptional program of Plasmodium falciparum 96%
- Metabolic Adaptability and Nutrient Scavenging in Toxoplasma gondii: Insights from Ingestion Pathway-Deficient Mutants 94%
- 20-hydroxyecdysone (20E) primes innate immune responses that limit bacteria and malaria parasite survival in Anopheles gambiae 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.