Abstract
The Plasmodium falciparum apical membrane antigen 1 (AMA1) is a leading candidate for a malaria vaccine. Here, within-population analyses of alleles from 50 Thai P. falciparum isolates yield significant evidence for balancing selection on polymorphisms within the disulfide-bonded domains I and III of the surface accessible ectodomain of AMA1, a result very similar to that seen previously in a Nigerian population. Studying the frequency of nucleotide polymorphisms in both populations shows that the between-population component of variance (F(ST)) is significantly lower in domains I and III compared to the intervening domain II and compared to 11 unlinked microsatellite loci. A nucleotide site-by-site analysis shows that sites with exceptionally high or low F(ST) values cluster significantly into serial runs, with four runs of low values in domain I and one in domain III. These runs may map the sequences that are consistently under the strongest balancing selection from naturally acquired immune responses.
Publication types
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Research Support, Non-U.S. Gov't
MeSH terms
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Animals
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Antigens, Protozoan / genetics*
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Antigens, Protozoan / immunology
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Gene Frequency*
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Linkage Disequilibrium
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Malaria Vaccines / genetics*
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Malaria Vaccines / immunology
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Membrane Proteins / genetics*
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Membrane Proteins / immunology
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Molecular Sequence Data
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Plasmodium falciparum / genetics
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Plasmodium falciparum / immunology
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Polymorphism, Single Nucleotide
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Protozoan Proteins / genetics*
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Protozoan Proteins / immunology
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Recombination, Genetic
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Selection, Genetic*
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Sequence Analysis, DNA
Substances
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Antigens, Protozoan
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Malaria Vaccines
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Membrane Proteins
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Protozoan Proteins
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apical membrane antigen I, Plasmodium
Associated data
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GENBANK/AJ494866
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GENBANK/AJ494867
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GENBANK/AJ494868
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GENBANK/AJ494869
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GENBANK/AJ494870
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GENBANK/AJ494871
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GENBANK/AJ494872
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GENBANK/AJ494873
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GENBANK/AJ494874
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GENBANK/AJ494885
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