Home LiteratureArticle Details
PMID: 16227994 Published · ppublish English Journal Article Randomized Controlled Trial Research Support, Non-U.S. Gov't

Negative epistasis between the malaria-protective effects of alpha+-thalassemia and the sickle cell trait.

Nature genetics ·Vol. 37 ·No. 11 ·2005-11-00 ·Pages 1253-7

Williams TN, Mwangi TW, Wambua S, Peto TE, Weatherall DJ, Gupta S, Recker M, Penman BS, Uyoga S, Macharia A, Mwacharo JK, Snow RW, Marsh K

Abstract

The hemoglobinopathies, disorders of hemoglobin structure and production, protect against death from malaria. In sub-Saharan Africa, two such conditions occur at particularly high frequencies: presence of the structural variant hemoglobin S and alpha(+)-thalassemia, a condition characterized by reduced production of the normal alpha-globin component of hemoglobin. Individually, each is protective against severe Plasmodium falciparum malaria, but little is known about their malaria-protective effects when inherited in combination. We investigated this question by studying a population on the coast of Kenya and found that the protection afforded by each condition inherited alone was lost when the two conditions were inherited together, to such a degree that the incidence of both uncomplicated and severe P. falciparum malaria was close to baseline in children heterozygous with respect to the mutation underlying the hemoglobin S variant and homozygous with respect to the mutation underlying alpha(+)-thalassemia. Negative epistasis could explain the failure of alpha(+)-thalassemia to reach fixation in any population in sub-Saharan Africa.

MeSH Terms
Africa South of the Sahara/epidemiology Animals Child Cohort Studies Hemoglobin, Sickle/genetics Heterozygote Humans Incidence Kenya/epidemiology Malaria, Falciparum/epidemiology,genetics,prevention & control Plasmodium falciparum/growth & development Sickle Cell Trait/epidemiology,genetics alpha-Thalassemia/epidemiology,genetics
Chemicals
Hemoglobin, Sickle
Authors & Affiliations
13 authors, click to expand affiliations / ORCID
Williams Thomas N
Kenya Medical Research Institute/Wellcome Trust Programme, Centre for Geographic Medicine Research, Coast, PO Box 230, Kilifi District Hospital, Kilifi, Kenya. twilliams@kilifi.mimcom.net
Mwangi Tabitha W
Wambua Sammy
Peto Timothy E A
Weatherall David J
Gupta Sunetra
Recker Mario
Penman Bridget S
Uyoga Sophie
Macharia Alex
Mwacharo Jedidah K
Snow Robert W
Marsh Kevin
References (29)
29 references, click to expand
  1. Single-tube multiplex-PCR screen for common deletional determinants of alpha-thalassemia.
    Blood. 2000 Jan 1;95(1):360-2 PMID: 10607725
  2. Both heterozygous and homozygous alpha+ thalassemias protect against severe and fatal Plasmodium falciparum malaria on the coast of Kenya.
    Blood. 2005 Jul 1;106(1):368-71 PMID: 15769889
  3. The population genetics of the haemoglobinopathies.
    Baillieres Clin Haematol. 1998 Mar;11(1):1-51 PMID: 10872472
  4. Paediatric survival and re-admission risks following hospitalization on the Kenyan coast.
    Trop Med Int Health. 2000 May;5(5):377-83 PMID: 10886803
  5. WHO Expert Committee on Malaria.
    World Health Organ Tech Rep Ser. 2000;892:i-v, 1-74 PMID: 10892307
  6. Protective effects of the sickle cell gene against malaria morbidity and mortality.
    Lancet. 2002 Apr 13;359(9314):1311-2 PMID: 11965279
  7. A human complement receptor 1 polymorphism that reduces Plasmodium falciparum rosetting confers protection against severe malaria.
    Proc Natl Acad Sci U S A. 2004 Jan 6;101(1):272-7 PMID: 14694201
  8. Epistasis: too often neglected in complex trait studies?
    Nat Rev Genet. 2004 Aug;5(8):618-25 PMID: 15266344
  9. Alpha(+)-thalassemia protects African children from severe malaria.
    Blood. 2004 Oct 1;104(7):2003-6 PMID: 15198952
  10. Erythrocytic mechanism of sickle cell resistance to malaria.
    Proc Natl Acad Sci U S A. 1978 Apr;75(4):1994-7 PMID: 347452
  11. Cellular mechanism for the protective effect of haemoglobin S against P. falciparum malaria.
    Nature. 1978 Aug 17;274(5672):701-3 PMID: 353566
  12. Sickle cell anemia and trait in southern India: further studies.
    Am J Hematol. 1979;6(2):107-23 PMID: 474571
  13. Protection against malaria morbidity: near-fixation of the alpha-thalassemia gene in a Nepalese population.
    Am J Hum Genet. 1991 Feb;48(2):390-7 PMID: 1990845
  14. Transgenic mice expressing human sickle hemoglobin are partially resistant to rodent malaria.
    Blood. 1993 Jan 1;81(1):222-6 PMID: 8417791
  15. Transgenic and mutant animal models to study mechanisms of protection of red cell genetic defects against malaria.
    Experientia. 1993 Jan 15;49(1):37-42 PMID: 8428608
  16. A prospective study of the influence of alpha thalassaemia on morbidity from malaria and immune responses to defined Plasmodium falciparum antigens in Gambian children.
    Trans R Soc Trop Med Hyg. 1993 May-Jun;87(3):282-5 PMID: 8236392
  17. Synergistic effects of angiotensin-converting enzyme and angiotensin-II type 1 receptor gene polymorphisms on risk of myocardial infarction.
    Lancet. 1994 Oct 1;344(8927):910-3 PMID: 7934345
  18. Natural selection of hemi- and heterozygotes for G6PD deficiency in Africa by resistance to severe malaria.
    Nature. 1995 Jul 20;376(6537):246-9 PMID: 7617034
  19. Two-locus maximum lod score analysis of a multifactorial trait: joint consideration of IDDM2 and IDDM4 with IDDM1 in type 1 diabetes.
    Am J Hum Genet. 1995 Oct;57(4):920-34 PMID: 7573054
  20. High incidence of malaria in alpha-thalassaemic children.
    Nature. 1996 Oct 10;383(6600):522-5 PMID: 8849722
  21. Relation between severe malaria morbidity in children and level of Plasmodium falciparum transmission in Africa.
    Lancet. 1997 Jun 7;349(9066):1650-4 PMID: 9186382
  22. alpha+-Thalassemia protects children against disease caused by other infections as well as malaria.
    Proc Natl Acad Sci U S A. 1997 Dec 23;94(26):14736-41 PMID: 9405682
  23. Identification of novel susceptibility loci for inflammatory bowel disease on chromosomes 1p, 3q, and 4q: evidence for epistasis between 1p and IBD1.
    Proc Natl Acad Sci U S A. 1998 Jun 23;95(13):7502-7 PMID: 9636179
  24. Loci on chromosomes 2 (NIDDM1) and 15 interact to increase susceptibility to diabetes in Mexican Americans.
    Nat Genet. 1999 Feb;21(2):213-5 PMID: 9988276
  25. The effect of delivery mechanisms on the uptake of bed net re-impregnation in Kilifi District, Kenya.
    Health Policy Plan. 1999 Mar;14(1):18-25 PMID: 10351466
  26. POLYMORPHISM AND NATURAL SELECTION IN HUMAN POPULATIONS.
    Cold Spring Harb Symp Quant Biol. 1964;29:137-49 PMID: 14278460
  27. Enhanced phagocytosis of ring-parasitized mutant erythrocytes: a common mechanism that may explain protection against falciparum malaria in sickle trait and beta-thalassemia trait.
    Blood. 2004 Nov 15;104(10):3364-71 PMID: 15280204
  28. The hydration state of human red blood cells and their susceptibility to invasion by Plasmodium falciparum.
    Blood. 2005 Jun 15;105(12):4853-60 PMID: 15728121
  29. Sickle cell trait and the risk of Plasmodium falciparum malaria and other childhood diseases.
    J Infect Dis. 2005 Jul 1;192(1):178-86 PMID: 15942909
Article Info
Journal
Nature genetics
Abbr.
Nat Genet
ISSN
1061-4036
Published
2005-11-00
Epub
2005-00-16
Pages
1253-7
Language
English
Region
United States
NLM ID
9216904
PMCID
PMC3521056
Subset
IM
Grants
Wellcome Trust · 058992 · United Kingdom
Corrections
CommentIn
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com