Diversity and diversification of HLA-A,B,C alleles.
Open Access
- 1 June 1989
- journal article
- research article
- Published by Oxford University Press (OUP) in The Journal of Immunology
- Vol. 142 (11) , 3937-3950
- https://doi.org/10.4049/jimmunol.142.11.3937
Abstract
The nucleotide sequences encoding 14 HLA-A,B,C and 5 ChLA-A,B,C molecules have been determined. Combining these sequences with published data has enabled the polymorphism in 40 HLA-A,B,C and 9 ChLA-A,B,C alleles to be analyzed. Diversity is generated through assortment of point mutations by recombinational mechanisms including gene and allelic conversions. The distribution and frequency of silent and replacement substitutions indicate that there has been positive selection for allelic diversity in the 5' part of the gene (exons 1 to 3) and for allelic homogenization and locus specificity in the 3' part of the gene (exons 4 to 8). These differences may correlate with the lengths of converted sequences in the two parts of the gene and frequency of the CpG dinucleotide. Locus-specific divergence of HLA-A,B, and C demonstrates that recombinational events involving alleles of a locus have been more important than conversion between loci. This contrasts with the predominance of gene conversion events in the evolution of mutants of the H-2Kb gene. However, a striking example of gene conversion involving HLA-B and C alleles of an oriental haplotype has been found. Comparison of human and chimpanzee alleles reveals extensive sharing of polymorphisms, confirming that diversification is a slow process, and that much of contemporary polymorphism originated in ancestral primate species before the emergence of Homo sapiens. There is less polymorphism at the HLA-A locus compared to HLA-B, with greater similarity also being seen between HLA-A and ChLA-A alleles than between HLA-B and ChLA-B alleles. Although greater diversity is seen in the 5' "variable" exons of HLA-B compared to HLA-A, there is increased heterogeneity in the 3' "conserved" exons of HLA-A compared to HLA-B.This publication has 45 references indexed in Scilit:
- Comparison of class I (H-2) gene sequences. Derivation of unique probes for members of this multigene family.Journal of Biological Chemistry, 1983
- A directional process of gene conversion is expected to yield dynamic polymorphism associated with stability of alternative alleles in class I histocompatibility antigens gene familyBiochimie, 1983
- Comparative structural analysis of HLA-A2 antigens distinguishable by cytotoxic T lymphocytes. II. Variant DK1: evidence for a discrete CTL recognition region.The Journal of Immunology, 1983
- Comparison of the cloned H-2Kbm1 variant gene with the H-2Kb gene shows a cluster of seven nucleotide differences.Proceedings of the National Academy of Sciences, 1983
- The DNA sequence of the H-2kb gene: evidence for gene conversion as a mechanism for the generation of polymorphism in histocompatibilty antigens.The EMBO Journal, 1983
- The structure of a mutant H–2 gene suggests that the generation of polymorphism in H–2 genes may occur by gene conversion-like eventsNature, 1983
- Clusters of genes encoding mouse transplantation antigensCell, 1982
- Exon/intron organization and complete nucleotide sequence of an HLA gene.Proceedings of the National Academy of Sciences, 1982
- A pseudogene homologous to mouse transplantation antigens: Transplantation antigens are encoded by eight exons that correlate with protein domainsCell, 1981
- MAJOR HISTOCOMPATIBILITY COMPLEX OF CHIMPANZEES - IDENTIFICATION OF SEVERAL NEW ANTIGENS CONTROLLED BY A-LOCUS AND B-LOCUS OF CHLA1978