Literature DB >> 10570183

Emergence of FY*A(null) in a Plasmodium vivax-endemic region of Papua New Guinea.

P A Zimmerman1, I Woolley, G L Masinde, S M Miller, D T McNamara, F Hazlett, C S Mgone, M P Alpers, B Genton, B A Boatin, J W Kazura.   

Abstract

In Papua New Guinea (PNG), numerous blood group polymorphisms and hemoglobinopathies characterize the human population. Human genetic polymorphisms of this nature are common in malarious regions, and all four human malaria parasites are holoendemic below 1500 meters in PNG. At this elevation, a prominent condition characterizing Melanesians is alpha(+)-thalassemia. Interestingly, recent epidemiological surveys have demonstrated that alpha(+)-thalassemia is associated with increased susceptibility to uncomplicated malaria among young children. It is further proposed that alpha(+)-thalassemia may facilitate so-called "benign" Plasmodium vivax infection to act later in life as a "natural vaccine" against severe Plasmodium falciparum malaria. Here, in a P. vivax-endemic region of PNG where the resident Abelam-speaking population is characterized by a frequency of alpha(+)-thalassemia >/=0.98, we have discovered the mutation responsible for erythrocyte Duffy antigen-negativity (Fy[a-b-]) on the FY*A allele. In this study population there were 23 heterozygous and no homozygous individuals bearing this new allele (allele frequency, 23/1062 = 0.022). Flow cytometric analysis illustrated a 2-fold difference in erythroid-specific Fy-antigen expression between heterozygous (FY*A/FY*A(null)) and homozygous (FY*A/FY*A) individuals, suggesting a gene-dosage effect. In further comparisons, we observed a higher prevalence of P. vivax infection in FY*A/FY*A (83/508 = 0.163) compared with FY*A/FY*A(null) (2/23 = 0.087) individuals (odds ratio = 2.05, 95% confidence interval = 0.47-8.91). Emergence of FY*A(null) in this population suggests that P. vivax is involved in selection of this erythroid polymorphism. This mutation would ultimately compromise alpha(+)-thalassemia/P. vivax-mediated protection against severe P. falciparum malaria.

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Year:  1999        PMID: 10570183      PMCID: PMC24175          DOI: 10.1073/pnas.96.24.13973

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


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Authors:  D J Weatherall
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Authors:  P A Zimmerman; P M Phadke; A Lee; L H Elson; E Aruajo; R Guderian; T B Nutman
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4.  Molecular basis and PCR-DNA typing of the Fya/fyb blood group polymorphism.

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Review 5.  The Duffy blood groups, vivax malaria, and malaria selection in human populations: a review.

Authors:  F B Livingstone
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6.  Presence of the Duffy blood group gene Fy-b demonstrated in Melanesians.

Authors:  R T Simmons; D C Gajdusek; J G Gorman; C Kidson; R W Hornabrook
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7.  The Disappearance of Malaria from England.

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Authors:  L H Miller; S J Mason; D F Clyde; M H McGinniss
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9.  alpha+-Thalassemia protects children against disease caused by other infections as well as malaria.

Authors:  S J Allen; A O'Donnell; N D Alexander; M P Alpers; T E Peto; J B Clegg; D J Weatherall
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10.  A new human Duffy blood group specificity defined by a murine monoclonal antibody. Immunogenetics and association with susceptibility to Plasmodium vivax.

Authors:  M E Nichols; P Rubinstein; J Barnwell; S Rodriguez de Cordoba; R E Rosenfield
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