ABH and Related Histo‐Blood Group Antigens; Immunochemical Differences in Carrier Isotypes and Their Distribution1
- 1 January 1989
- journal article
- review article
- Published by Wiley in Vox Sanguinis
- Vol. 56 (1) , 1-20
- https://doi.org/10.1111/j.1423-0410.1989.tb03040.x
Abstract
This review summarizes present knowledge of the chemistry of histo-blood group ABH and related antigens. Recent advances in analytical carbohydrate chemistry (particularly mass spectrometry and NMR spectroscopy) and the introduction of monoclonal antibodies (MoAbs) have made it possible to distinguish structural variants of histo-blood group ABH antigens. Polymorphism of ABH antigens is induced by: (i) variations in peripheral core structure, of which four (type 1, 2, 3 and 4) are known in man; (ii) variation in inner core by branching process (blood group iI), leading to variation of unbranched vs. branched ABH determinants; (iii) biosynthetic interaction with other glycosyltransferases (Lewis, P. T/Tn blood systems) capable of acting on the same substrate as the ABH-defined transferases, and finally (iv) the nature of the glycoconjugate (glycolipid, glycoprotein of N- or O-linked type). ABH variants induced by item (i) above have been clearly distinguished qualitatively by MoAbs; e.g., at least six types of A determinants can be distinguished by qualitatively different classes of antibody. The variants induced by item (ii) create mono- vs. bivalent antigens which may be responsible for observed differences in antibody-binding affinity. Detailed studies of the chemistry of these antigens have increased our insight into blood groups, providing the basis for blood group iI and A subgrouping, as well as a relation between the ABH and Lewis, P, and T/Tn systems. A survey of the literature on distribution patterns of ABH variants is presented. It has been assumed that expression of histo-blood group antigens is developmentally regulated. Relationships between histo-blood group expression, development, differentiation and maturation, as well as malignant transformation, are discussed.Keywords
This publication has 111 references indexed in Scilit:
- Glycolipid core structure switching from globo- to lacto- and ganglio-series during retinoic acid-induced differentiation of TERA-2-derived human embryonal carcinoma cellsDevelopmental Biology, 1987
- Monoclonal antibodies specific for type 3 and type 4 chain-based blood group determinants: Relationship to the A1 and A2 subgroupsGlycoconjugate Journal, 1986
- Studies on the human blood group p system: An existence of UDP-Gal:Lactosylceramide α1→4 galactosyltransferase in the small p type cellsBiochemical and Biophysical Research Communications, 1986
- Blood group a glycolipid (AX) with globo-series structure which is specific for blood group A1 erythrocytes: One of the chemical bases for A1 and A2 distinctionBiochemical and Biophysical Research Communications, 1984
- Human salivary fucosyltransferases: Evidence for two distinct α-3-L-fucosyltransferase activities one of which is associated with the lewis blood group Le geneBiochemical and Biophysical Research Communications, 1981
- Lymphocytotoxic definition of combined ABH and Lewis antigens and their transfer from Sera to lymphocytesHuman Immunology, 1980
- “Ganglioprotein and globoprotein”: The glycoproteins reacting with anti-ganglioside and anti-globoside antibodies and the ganglioprotein change associated with transformationBiochemical and Biophysical Research Communications, 1977
- Blood group substances (BG) as carcinofetal antigens in carcinomas of the distal colonPublished by Elsevier ,1974
- Four antigenic variants of blood group A glycolipid: Examples of highly complex, branched chain glycolipid of animal cell membraneBiochemical and Biophysical Research Communications, 1972
- Zur Serologischen Spezifität des CarcinomgewebesJournal of Molecular Medicine, 1930