X-Linked G6PD Deficiency Protects Hemizygous Males but Not Heterozygous Females against Severe Malaria
Open Access
- 13 March 2007
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLoS Medicine
- Vol. 4 (3) , e66
- https://doi.org/10.1371/journal.pmed.0040066
Abstract
Glucose-6-phosphate dehydrogenase (G6PD) is important in the control of oxidant stress in erythrocytes, the host cells for Plasmodium falciparum. Mutations in this enzyme produce X-linked deficiency states associated with protection against malaria, notably in Africa where the A− form of G6PD deficiency is widespread. Some reports have proposed that heterozygous females with mosaic populations of normal and deficient erythrocytes (due to random X chromosome inactivation) have malaria resistance similar to or greater than hemizygous males with populations of uniformly deficient erythrocytes. These proposals are paradoxical, and they are not consistent with currently hypothesized mechanisms of protection. We conducted large case-control studies of the A− form of G6PD deficiency in cases of severe or uncomplicated malaria among two ethnic populations of rural Mali, West Africa, where malaria is hyperendemic. Our results indicate that the uniform state of G6PD deficiency in hemizygous male children conferred significant protection against severe, life-threatening malaria, and that it may have likewise protected homozygous female children. No such protection was evident from the mosaic state of G6PD deficiency in heterozygous females. We also found no significant differences in the parasite densities of males and females with differences in G6PD status. Pooled odds ratios from meta-analysis of our data and data from a previous study confirmed highly significant protection against severe malaria in hemizygous males but not in heterozygous females. Among the different forms of severe malaria, protection was principally evident against cerebral malaria, the most frequent form of life-threatening malaria in these studies. The A− form of G6PD deficiency in Africa is under strong natural selection from the preferential protection it provides to hemizygous males against life-threatening malaria. Little or no such protection is present among heterozygous females. Although these conclusions are consistent with data from at least one previous study, they have not heretofore been realized to our knowledge, and they therefore give fresh perspectives on malaria protection by G6PD deficiency as an X-linked trait.Keywords
This publication has 24 references indexed in Scilit:
- The burden of malaria mortality among African children in the year 2000International Journal of Epidemiology, 2006
- Community Permission for Medical Research in Developing CountriesClinical Infectious Diseases, 2005
- Abnormal display of PfEMP-1 on erythrocytes carrying haemoglobin C may protect against malariaNature, 2005
- Common West African HLA antigens are associated with protection from severe malariaNature, 1991
- Adaptation of Plasmodium falciparum to glucose 6-phosphate dehydrogenase-deficient host red cells by production of parasite-encoded enzymeNature, 1985
- Oxidant damage mediates variant red cell resistance to malariaNature, 1979
- GLUCOSE-6-PHOSPHATE DEHYDROGENASE AND MALARIAThe Lancet, 1972
- GLUCOSE-6-PHOSPHATE-DEHYDROGENASE DEFICIENCY, SICKLING, AND MALARIA IN AFRICAN CHILDREN IN SOUTH WESTERN NIGERIAThe Lancet, 1967
- Glucose-6-Phosphate Dehydrogenase Deficiency in Red Blood Cells of East AfricansNature, 1960
- Stable Equilibrium at a Sex-linked LocusNature, 1959