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HLA - B和HLA - C序列中的等位基因变异以及HLA - B等位基因的进化

Allelic variation in HLA-B and HLA-C sequences and the evolution of the HLA-B alleles.

作者信息

Pohla H, Kuon W, Tabaczewski P, Doerner C, Weiss E H

机构信息

Institute for Immunology, University of Munich, Federal Republic of Germany.

出版信息

Immunogenetics. 1989;29(5):297-307. doi: 10.1007/BF00352839.

Abstract

Several new HLA-B (B8, B51, Bw62)- and HLA-C (Cw6, Cw7)-specific genes were isolated either as genomic cosmid or cDNA clones to study the diversity of HLA antigens. The allele specificities were identified by sequence analysis in comparison with published HLA-B and -C sequences, by transfection experiments, and Southern and northern blot analysis using oligonucleotide probes. Comparison of the classical HLA-A, -B, and -C sequences reveals that allele-specific substitutions seem to be rare events. HLA-B51 codes only for one allele-specific residue: arginine at position 81 located on the alpha 1 helix, pointing toward the antigen binding site. HLA-B8 contains an acidic substitution in amino acid position 9 on the first central beta sheet which might affect antigen binding capacity, perhaps in combination with the rare replacement at position 67 (F) on the alpha 1 helix. HLA-B8 shows greatest homology to HLA-Bw42, -Bw41, -B7, and -Bw60 antigens, all of which lack the conserved restriction sites Pst I at position 180 and Sac I at position 131. Both sites associated with amino acid replacements seem to be genetic markers of an evolutionary split of the HLA-B alleles, which is also observed in the leader sequences. HLA-Cw7 shows 98% sequence identity to the JY328 gene. In general, the HLA-C alleles display lower levels of variability in the highly polymorphic regions of the alpha 1 and alpha 2 domains, and have more distinct patterns of locus-specific residues in the transmembrane and cytoplasmic domains. Thus we propose a more recent origin for the HLA-C locus.

摘要

为研究HLA抗原的多样性,分离出了几个新的HLA - B(B8、B51、Bw62)和HLA - C(Cw6、Cw7)特异性基因,形式为基因组黏粒或cDNA克隆。通过与已发表的HLA - B和 - C序列进行序列分析、转染实验以及使用寡核苷酸探针的Southern和Northern印迹分析来鉴定等位基因特异性。对经典的HLA - A、 - B和 - C序列进行比较后发现,等位基因特异性取代似乎是罕见事件。HLA - B51仅编码一个等位基因特异性残基:位于α1螺旋上第81位的精氨酸,指向抗原结合位点。HLA - B8在第一个中央β折叠的第9位氨基酸处有一个酸性取代,这可能会影响抗原结合能力,也许与α1螺旋上第67位(F)的罕见替换相结合。HLA - B8与HLA - Bw42、 - Bw41、 - B7和 - Bw60抗原具有最高的同源性,所有这些抗原在第180位均缺乏保守的限制性酶切位点Pst I,在第131位缺乏Sac I。这两个与氨基酸替换相关的位点似乎是HLA - B等位基因进化分裂的遗传标记,在引导序列中也观察到了这一点。HLA - Cw7与JY328基因的序列一致性为98%。总体而言,HLA - C等位基因在α1和α2结构域的高度多态性区域中表现出较低的变异性水平,并且在跨膜和细胞质结构域中具有更独特的位点特异性残基模式。因此,我们提出HLA - C基因座的起源更为晚近。

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