The present study investigates the molecular basis of the G3m polymorphism expressed by the heavy constant domains of human immunoglobulins gamma 3 chains. By using a new protocol allowing the specific cloning of IGHG3 genes, a total of 51 full-length IGHG3 genomic sequences (about 2 kb) isolated from African, Siberian, West Asian and European population samples were sequenced. IGHG3 sequences were assigned precise G3m haplotypes on the basis of specific associations between G3m allotypes and IGHG3 RFLPs. Specific DNA substitutions involved in the expression of G3m(5), G3m(6), G3m(15), G3m(16), G3m(21), G3m(24) and G3m(28) allotypes were then deduced, elucidating almost completely the determination of the G3m polymorphism at the DNA level. The molecular evolution of G3m haplotypes was investigated by a maximum likelihood phylogeny of IGHG3 sequences. Sequence clusters are shown to be G3m haplotype-specific, corroborating the Gm molecular model deduced from serology, and showing that populations differentiation is much more recent than G3m haplotypes differentiation. The widely distributed G3m 5,10,11,13,14 haplotype is likely to be ancestral to the other G3m haplotypes presently found at high frequencies in different continental areas. European Journal of Human Genetics (2001) 9, 765 ± 772.
This study presents restriction fragment length polymorphism (RFLP) and serological analyses of the immunoglobulin CH loci in a sample of 100 individuals from a Senegalese Mandenka population. The RFLP variability is mostly the result of large DNA insertions or deletions in the non-coding flanking regions of the IGHG genes, and to variable number of tandem repeat-like patterns within their 5'-switch sequences. However, part of the IGHG3 polymorphism also corresponds to a variable number of exons coding for the flexible hinge segment of the IgG3 antibody (the 4-exon and 3-exon forms, and a newly described 2-exon form). This diversity presents relevant associations with Gm haplotypes, suggesting that molecular rearrangements of the G3 hinge are related to the evolution of the Gm polymorphism. Non-significant correlation coefficients are found between Gm haplotypes and A2m alleles in the Mandenka, indicating that these loci may have reached equilibrium through recombination. The effect of recombination on linkage disequilibrium is more generally revealed, across the Ig CH genomic region, by a significant decrease of D' values with increasing physical distances between the loci on the chromosome.
We have identified two V lambda genes outside the major lambda locus on chromosome 22q11.2, and shown that they reside on chromosome 8q11.2. One gene (Orphée1), hybridizing strongly to the V lambda probes, was sequenced and found to belong to the V lambda 8 family; the other gene (Orphée2) only hybridized weakly. Orphée1 was present in all individuals tested (140) from three different populations, and was also found in gorillas. We envisage that these genes were generated by duplication and translocation of the V lambda 8a gene (and a V lambda pseudogene) from the major locus, and that this event occurred before the evolutionary divergence of humans and gorillas. As there is no other evidence for V lambda genes outside the major locus, it appears that the human lambda locus has undergone considerably less evolutionary shuffling than either the human light chain kappa locus or the heavy chain locus.
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