Haplotype structures and polymorphisms of dog leukocyte antigen (DLA) class I loci shaped by intralocus and interlocus recombination events.

IF 2.9 4区 医学 Q2 GENETICS & HEREDITY Immunogenetics Pub Date : 2022-04-01 Epub Date: 2022-01-07 DOI:10.1007/s00251-021-01234-5
Jiro Miyamae, Masaharu Okano, Kohei Nishiya, Fumihiko Katakura, Jerzy K Kulski, Tadaaki Moritomo, Takashi Shiina
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引用次数: 4

Abstract

The dog leukocyte antigen (DLA) class I genomic region is located on chromosome 12, and the class I genomic region is composed of at least two distinct haplotypic gene structures, DLA-88-DLA-12 and DLA-88-DLA-88L. However, detailed information of the genomic differences among DLA-88, DLA-12, and DLA-88L are still lacking at the full-length gene level, and therefore, DLA allelic sequences classified for each of these loci are limited in number so far. In this study, we determined the DNA sequence of a 95-kb DLA class I genomic region including DLA-88, DLA-12/88L, and DLA-64 with three DLA homozygous dogs and of 37 full-length allelic gene sequences for DLA-88 and DLA-12/88L loci in 26 DLA class I homozygous dogs. Nucleotide diversity profiles of the 95-kb regions and sequence identity scores of the allelic sequences suggested that DLA-88L is a hybrid gene generated by interlocus and/or intralocus gene conversion between DLA-88 and DLA-12. The putative minimum conversion tract was estimated to be at least an 850-bp segment in length located from the 5´flanking untranslated region to the end of intron 2. In addition, at least one DLA-12 allele (DLA-12*004:01) was newly generated by interlocus gene conversion. In conclusion, the analysis for the occurrence of gene conversion within the dog DLA class I region revealed intralocus gene conversion tracts in 17 of 27 DLA-88 alleles and two of 10 DLA-12 alleles, suggesting that intralocus gene conversion has played an important role in expanding DLA allelic variations.

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犬白细胞抗原(DLA) I类位点的单倍型结构和多态性由基因座内和基因座间重组事件形成。
犬白细胞抗原(DLA) I类基因组区位于12号染色体上,该I类基因组区由至少两种不同的单倍型基因结构组成,即DLA-88-DLA-12和DLA-88-DLA- 88l。然而,在全长基因水平上,关于DLA-88、DLA-12和DLA- 88l之间基因组差异的详细信息仍然缺乏,因此,到目前为止,针对这些位点分类的DLA等位基因序列数量有限。在本研究中,我们测定了3只DLA纯合犬的DLA-88、DLA-12/ 88l和DLA-64这3个95kb的DLA I类基因组区域的DNA序列,以及26只DLA I类纯合犬的DLA-88和DLA-12/ 88l位点37个全长等位基因序列。95kb区域的核苷酸多样性分析和等位基因序列的序列一致性评分表明,DLA-88L是DLA-88和DLA-12基因在位点间和/或位点内转换而产生的杂交基因。据估计,最小的转化链长度至少为850 bp,位于5´侧翼的未翻译区至内含子2的末端。此外,通过基因间转化,至少新产生了1个DLA-12等位基因(DLA-12*004:01)。综上所述,对犬DLA I类区基因转化发生情况的分析显示,27个DLA-88等位基因中有17个存在基因座内转化,10个DLA-12等位基因中有2个存在基因座内转化,提示基因座内转化在扩大DLA等位基因变异中发挥了重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Immunogenetics
Immunogenetics 医学-免疫学
CiteScore
6.20
自引率
6.20%
发文量
48
审稿时长
1 months
期刊介绍: Immunogenetics publishes original papers, brief communications, and reviews on research in the following areas: genetics and evolution of the immune system; genetic control of immune response and disease susceptibility; bioinformatics of the immune system; structure of immunologically important molecules; and immunogenetics of reproductive biology, tissue differentiation, and development.
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