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- W4293226045 abstract "Abstract Background: Polymorphisms in ATP2B4 coding for PMCA4b, the primary regulator of erythrocyte calcium concentration, have been shown by GWAS and cross-sectional studies to protect against severe malaria but the mechanism remains unknown. Methods: Using a recall-by-genotype design, we investigated the impact of a common haplotype variant in ATP2B4 using in vitro assays that model erythrocyte stage malaria pathogenesis. Ninety-six donors representing homozygote (carriers of the minor allele, C/C), heterozygote (T/C) and wildtype (T/T) carriers of the tagging SNP rs1541252 were selected from a cohort of over 12,000 participants in the Keneba Biobank. Results: Red blood cells (RBCs) from homozygotes showed reduced PMCA4b protein expression (mean fluorescence intensities (MFI = 2428 ± 124, 3544 ±159 and 4261±283] , for homozygotes, heterozygotes and wildtypes respectively, p<0.0001) and slower rates of calcium expulsion (calcium t ½ ± SD = 4.7±0.5, 1.8±0.3 and 1.9±0.4 min, p<0.0001). Growth of a Plasmodium falciparum laboratory strain ( FCR3 ) and two Gambian field isolates was decreased in RBCs from homozygotes compared to heterozygotes and wildtypes (p<0.01). Genotype group did not affect parasite adhesion in vitro or var -gene expression in malaria-infected RBCs. Parasite growth was inhibited by a known inhibitor of PMCA4b, aurintricarboxylic acid (IC 50 =122uM CI: 110-134) confirming its sensitivity to calcium channel blockade. Conclusion: The data support the hypothesis that this ATP2B4 genotype, common in The Gambia and other malaria-endemic areas, protects against severe malaria through the suppression of parasitemia during an infection. Reduction in parasite density plays a pivotal role in disease outcome by minimising all aspects of malaria pathogenesis. Follow up studies are needed to further elucidate the mechanism of protection and to determine if this ATP2B4 genotype carries a fitness cost or increases susceptibility to other human disease." @default.
- W4293226045 created "2022-08-27" @default.
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- W4293226045 date "2022-02-15" @default.
- W4293226045 modified "2023-10-18" @default.
- W4293226045 title "Genetic Variations In Human ATP2B4 Gene Alter Malaria Growth In Rbcs From Gambian Adults." @default.
- W4293226045 doi "https://doi.org/10.21203/rs.3.rs-1347245/v1" @default.
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