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首页> 外文期刊>Tissue antigens. >Allelic diversity within the high frequency Mamu-A2*05/Mane-A2*05 (Mane-A*06)/Mafa-A2*05 family of macaque MHC-A loci.
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Allelic diversity within the high frequency Mamu-A2*05/Mane-A2*05 (Mane-A*06)/Mafa-A2*05 family of macaque MHC-A loci.

机译:猕猴MHC-A基因座的高频Mamu-A2 * 05 / Mane-A2 * 05(Mane-A * 06)/ Mafa-A2 * 05家族内的等位基因多样性。

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摘要

Macaque species serve as important animal models of human infection and immunity. To more fully scrutinize their potential in both the analysis of disease pathogenesis and vaccine development, it is necessary to characterize the major histocompatibility complex (MHC) class I loci of Macaca mulatta (Mamu), Macaca nemestrina (Mane), and Macaca fascicularis (Mafa) at the genomic level. The oligomorphic Mamu-A2*05/Mane-A2*05 (previously known as Mane-A*06) family of macaque MHC-A alleles has recently been shown to be present at high frequency in both Indian rhesus and pig-tailed macaque populations. Using a locus-specific amplification and direct DNA typing methodology, we have additionally found that the locus encoding this family is very prevalent (75%) among a sampling of 182 Chinese rhesus macaques and has a high prevalence (80%) within a larger, independent cohort of 309 pig-tailed macaques. Interestingly, among the Chinese rhesus macaques, only six alleles previously identified in Indian-origin animals were observed, while three recently identified in Chinese-origin animals and 25 new alleles were characterized. Among the pig-tailed macaques, we observed 1 previously known (Mane-A*06) and 19 new alleles. Examination of the orthologous locus in a preliminary sampling of 30 cynomolgus macaques showed an even higher presence (87%) of Mafa-A2*05 family alleles, with 5 previously identified and 15 new alleles characterized. The continued discovery of novel alleles and thus further diversity within the Mamu-A2*05/Mane-A2*05/Mafa-A2*05 family indicates that this MHC-A locus, although highly conserved across the three species of macaques, has remained a dynamic entity during evolution.
机译:猕猴是人类感染和免疫力的重要动物模型。为了更全面地研究其在疾病发病机理和疫苗开发分析中的潜力,有必要鉴定猕猴(Mamu),猕猴(Mane)和猕猴(Mafa)的主要组织相容性复合体(MHC)I类位点)的基因组水平。猕猴MHC-A等位基因的寡聚型Mamu-A2 * 05 / Mane-A2 * 05(以前称为Mane-A * 06)家族最近显示出在印度恒河猴和猪尾猕猴中均以高频率存在。使用特定于基因座的扩增和直接DNA分型方法,我们还发现,在182个中华猕猴的采样中,编码该家族的基因座非常普遍(75%),并且在较大的猕猴中具有较高的患病率(80%),独立的309只猪尾猕猴。有趣的是,在中国猕猴中,仅观察到先前在印度起源的动物中鉴定出的六个等位基因,而最近在中国起源的动物中鉴定出了三个等位基因和25个新的等位基因。在猪尾猕猴中,我们观察到1个先前已知的(Mane-A * 06)和19个新的等位基因。在对30个食蟹猕猴的初步采样中对直系同源基因座的检查显示,Mafa-A2 * 05家族等位基因的出现率更高(87%),其中有5个先前确定的特征和15个新等位基因的特征。不断发现新的等位基因,从而在Mamu-A2 * 05 / Mane-A2 * 05 / Mafa-A2 * 05家族中进一步多样性表明,该MHC-A基因座尽管在三种猕猴中高度保守,但仍然存在进化过程中的动态实体。

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