Detection of Glucose-6-Phosphate Dehydrogenase Deficient Heterozygotes
Open Access
- 1 January 1967
- journal article
- research article
- Published by American Society of Hematology in Blood
- Vol. 29 (1) , 87-101
- https://doi.org/10.1182/blood.v29.1.87.87
Abstract
Heterozygotes for the Mediterranean type of severe G-6-PD deficiency were investigated by a variety of tests. The methemoglobin reduction test was most successful in detecting heterozygotes (about 80 per cent). Enumeration of methemoglobin containing cells on blood films (Kleihauer-Betke technic) did not improve these results. Quantitation of enzyme level was less successful (65 per cent), and determination of decolorization time by the BCB technic was least sensitive in heterozygote detection. Methemoglobin reduction technics reflect a more indirect effect of the mutant gene than enzyme assay. The superiority of these technics in heterozygote detection is probably caused by the genetically determined presence of both normal and enzyme-deficient cells in G-6-PD deficient heterozygotes. Since methemoglobin reduction is carried out by individual cells, the population of enzyme deficient cells does not reduce methemoglobin, and therefore even a minority of deficient cells leads to abnormal test results. In contrast, enzyme assay is less successful for heterozygote detection, since measurement of enzyme level is carried out on hemolyzed red cells, where cellular mosaicism no longer exists. An additional source of variation of enzyme levels in heterozygotes is caused by the existence of genetically determined control of normal enzyme level. Possession of a high capacity allele for G-6-PD activity may place a heterozygote in the normal range of enzyme activity. The various tests were also applied to subjects with the mild Greek type of G-6-PD deficiency. Males with this mutation had enzyme levels varying between 12-45 per cent of the mean of normal males. Methemoglobin reduction test results were considerably less abnormal in hemizygotes with the mild type of Mediterranean deficiency than in heterozygotes with the severe deficiency. Fewer heterozygotes with the mild deficiency were detected.This publication has 11 references indexed in Scilit:
- STUDIES OF GLUCOSE-6-PHOSPHATE DEHYDROGENASE ACTIVITY OF INDIVIDUAL ERYTHROCYTES - METHEMOGLOBIN-ELUTION TEST FOR IDENTICATION OF FEMALES HETEROZYGOUS FOR G6PD DEFICIENTY1965
- Genetic variations in the quantitative control of erythrocyte glucose‐6‐phosphate dehydrogenase activityAnnals of Human Genetics, 1964
- RECHERCHES SUR LE DEFICIT EN GLUCOSE-6-PHOSPHATE DESHYDROGENASE EN FRANCE . A PROPOS DE 200 DOSAGES1964
- Red cell glucose‐6‐phosphate dehydrogenase activity in individuals with abnormal numbers of X‐chromosomesAnnals of Human Genetics, 1963
- DOSAGE COMPENSATION IN REGULATION OF ERYTHROCYTE GLUCOSE-6-PHOSPHATE DEHYDROGENASE ACTIVITY1963
- Genetical linkage between the loci for glucose‐6‐phosphate dehydrogenase deficiency and colour‐blindness in American NegroesAnnals of Human Genetics, 1962
- A Simple Method for Detection of Erythrocyte Glucose-6-Phosphate Dehydrogenase Deficiency (G-6-PD Spot Test)Blood, 1962
- A Colorimetric Method for Assay of Erythrocytic Glucose-6-phosphate Dehydrogenase.Experimental Biology and Medicine, 1961
- ERYTHROCYTE GLUCOSE-6-PHOSPHATE DEHYDROGENASE DEFICIENCY: EVIDENCE OF DIFFERENCES BETWEEN NEGROES AND CAUCASIANS WITH RESPECT TO THIS GENETICALLY DETERMINED TRAIT*Journal of Clinical Investigation, 1959
- Further studies on the properties and assay of glucose 6-phosphate dehydrogenase and 6-phosphogluconate dehydrogenase of rat liverBiochemical Journal, 1953