Genomic plasticity of the MHC class I A region in rhesus macaques: extensive haplotype diversity at the population level as revealed by microsatellites

被引:0
作者
Gaby G. M. Doxiadis
Nanine de Groot
Nel Otting
Jeroen H. Blokhuis
Ronald E. Bontrop
机构
[1] Biomedical Primate Research Centre,Department of Comparative Genetics and Refinement
[2] Utrecht University,Theoretical Biology and Bioinformatics
来源
Immunogenetics | 2011年 / 63卷
关键词
MHC; Microsatellites; Macaque; Physical map; Duplications; Disease susceptibility;
D O I
暂无
中图分类号
学科分类号
摘要
The Mamu-A genes of the rhesus macaque show different degrees of polymorphism, transcription level variation, and differential haplotype distribution. Per haplotype, usually one “major” transcribed gene is present, A1 (A7), in various combinations with “minor” genes, A2 to A6. In silico analysis of the physical map of a heterozygous animal revealed the presence of similar Mamu-A regions consisting of four duplication units, but with dissimilar positions of the A1 genes on both haplotypes, and in combination with different minor genes. Two microsatellites, D6S2854 and D6S2859, have been selected as potential tools to characterize this complex region. Subsequent analysis of a large breeding colony resulted in the description of highly discriminative patterns, displaying copy number variation in concert with microsatellite repeat length differences. Sequencing and segregation analyses revealed that these patterns are unique for each Mamu-A haplotype. In animals of Indian, Burmese, and Chinese origin, 19, 15, or 9 haplotypes, respectively, could be defined, illustrating the occurrence of differential block duplications and subsequent rearrangements by recombination. The haplotypes can be assigned to 12 unique combinations of genes (region configurations). Although most configurations harbor two transcribed A genes, one or three genes per haplotype are also present. Additionally, haplotypes lacking an A1 gene or with an A1 duplication appear to exist. The presence of different transcribed A genes/alleles in monkeys from various origins may have an impact on differential disease susceptibilities. The high-throughput microsatellite technique will be a valuable tool in animal selection for diverse biomedical research projects.
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页码:73 / 83
页数:10
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共 455 条
[1]  
Barton A(2009)Genetic susceptibility to rheumatoid arthritis: an emerging picture Arthritis Rheum 61 1441-1446
[2]  
Worthington J(2009)LINE dancing in the human genome: transposable elements and disease Genome Med 1 97-958
[3]  
Belancio VP(1987)The HLA system: structure and function J Clin Pathol 40 948-9
[4]  
Deininger PL(2008)Genomic plasticity of the immune-related Mhc class I B region in macaque species BMC Genomics 9 514-233
[5]  
Roy-Engel AM(2001)Non-human primates: essential partners in biomedical research Immunol Rev 183 5-62
[6]  
Bodmer WF(2005)MHC polymorphism: AIDS susceptibility in non-human primates Trends Immunol 26 227-4665
[7]  
Bonhomme M(1995)Evolution of major histocompatibility complex polymorphisms and T-cell receptor diversity in primates Immunol Rev 143 33-187
[8]  
Doxiadis GG(1996)The MHC class I genes of the rhesus monkey. Different evolutionary histories of MHC class I and II genes in primates J Immunol 156 4656-S114
[9]  
Heijmans CM(2009)Characterization of 47 MHC class I sequences in Filipino cynomolgus macaques Immunogenetics 61 177-304
[10]  
Vervoort V(2002)Effects of MHC class I on HIV/SIV disease in primates AIDS 16 S105-1515