Abstract
In contradiction to the general Mendelian inheritance of blood group ABO expression, the A and B characteristics are inherited together from one parent in the rare Cis-AB phenotype. Since the synthesis of blood group A and B substances are controlled by N-acetylgalactosoaminyltransferase (A-enzyme) and galactosyltransferase (B-enzyme), the genetic mechanism of Cis-AB expression may be elucidated by examining the characteristics of A- and B-enzymes in Cis-AB plasma. Biochemical study reveals that the examined Cis-AB plasma contains two separable enzyme components: one with kinetic properties similar to those of common A2-enzyme, but differing from A1-enzyme, and another with kinetic characteristics similar to those of common B-enzyme. Therefore, Cis-AB expression, at least in the case examined, is due to unequal crossing over, producing a chromosome with alleles for A2- and B-enzymes, rather than to a structural mutation in A or B alleles producing a single abnormal enzyme with bifunctional activity.
MeSH Terms
ABO Blood-Group System/genetics
Adult
Chromatography, Agarose
Crossing Over, Genetic
Fucose/analogs & derivatives,genetics
Galactosamine/genetics
Galactosyltransferases/blood,genetics
Genetic Linkage
Hemagglutination Tests
Humans
Hydrogen-Ion Concentration
Kinetics
Male
Models, Genetic
N-Acetylgalactosaminyltransferases
Pedigree
Chemicals
ABO Blood-Group System
Fucose
Galactosamine
Galactosyltransferases
N-Acetylgalactosaminyltransferases
UDPgalactosamine-galactose acetylgalactosaminyltransferase
blood-group-substance alpha-D-galactosyltransferase
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Yoshida A
Yamaguchi H
Okubo Y
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20 references, click to expand
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