Dadi Hailu, Le MinhThong, Dinka Hunduma, Nguyen DinhTruong, Choi Hojun, Cho Hyesun, Choi Minkyeung, Kim Jin-Hoi, Park Jin-Ki, Soundrarajan Nagasundarapandian, Park Chankyu
Department of Animal Biotechnology, Konkuk University, Seoul, 143-701, Korea.
Animal Biotechnology Division, National Institute of Animal Science, Suwon, 441-350, Korea.
PLoS One. 2015 Aug 25;10(8):e0135922. doi: 10.1371/journal.pone.0135922. eCollection 2015.
The genetic structure and function of MHC class I chain-related (MIC) genes in the pig genome have not been well characterized, and show discordance in available data. Therefore, we have experimentally characterized the exon-intron structure and functional copy expression pattern of the pig MIC gene, SLA-MIC2. We have also studied the genetic diversity of SLA-MIC2 from seven different breeds using a high-resolution genomic sequence-based typing (GSBT) method. Our results showed that the SLA-MIC2 gene has a similar molecular organization as the human and cattle orthologs, and is expressed in only a few tissues including the small intestine, lung, and heart. A total of fifteen SLA-MIC2 alleles were identified from typing 145 animals, ten of which were previously unreported. Our analysis showed that the previously reported and tentatively named SLA-MIC2*05, 07, and 01 alleles occurred most frequently. The observed heterozygosity varied from 0.26 to 0.73 among breeds. The number of alleles of the SLA-MIC2 gene in pigs is somewhat lower compared to the number of alleles of the porcine MHC class I and II genes; however, the level of heterozygosity was similar. Our results indicate the comprehensiveness of using genomic DNA-based typing for the systemic study of the SLA-MIC2 gene. The method developed for this study, as well as the detailed information that was obtained, could serve as fundamental tools for understanding the influence of the SLA-MIC2 gene on porcine immune responses.
猪基因组中主要组织相容性复合体(MHC)I类链相关(MIC)基因的遗传结构和功能尚未得到充分表征,现有数据也存在不一致性。因此,我们通过实验对猪MIC基因SLA-MIC2的外显子-内含子结构和功能拷贝表达模式进行了表征。我们还使用基于高分辨率基因组序列的分型(GSBT)方法研究了7个不同品种猪的SLA-MIC2基因的遗传多样性。我们的结果表明,SLA-MIC2基因具有与人类和牛的直系同源基因相似的分子结构,并且仅在包括小肠、肺和心脏在内的少数组织中表达。通过对145头动物进行分型,共鉴定出15个SLA-MIC2等位基因,其中10个是以前未报道过的。我们的分析表明,先前报道并暂定命名的SLA-MIC2*05、07和01等位基因出现频率最高。各品种中观察到的杂合度在0.26至0.73之间。与猪MHC I类和II类基因的等位基因数量相比,猪SLA-MIC2基因的等位基因数量略少;然而,杂合度水平相似。我们的结果表明,基于基因组DNA的分型对于SLA-MIC2基因的系统研究具有全面性。本研究开发的方法以及获得的详细信息,可作为理解SLA-MIC2基因对猪免疫反应影响的基础工具。