首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Allorecognition of an HLA-A*01 aberrant allele by an HLA identical family member carrying the HLA-A*0101 allele.
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Allorecognition of an HLA-A*01 aberrant allele by an HLA identical family member carrying the HLA-A*0101 allele.

机译:携带HLA-A * 0101等位基因的HLA相同家族成员对HLA-A * 01异常等位基因的等位基因识别。

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摘要

We identified and characterized an HLA-A1 aberrant allele (A*0118N) resulting from a novel molecular mechanism; this allele was present in an unusually informative family with a near identical parental HLA haplotype (c d) differing only by one nucleotide substitution in one HLA-A allele, A*0118N, of the maternal HLA haplotype (c) and not of the paternal HLA haplotype (a). Although serologic HLA typing showed a "blank," DNA molecular HLA typing detected a HLA-A*0118N allele. Sequence based typing identified the substitution of guanine by cytosine at the nucleotide position 215, which resulted in the replacement of arginine by proline at position 48 of the HLA-A1 H chain. The loss of surface protein expression was also found by FACS analysis. Isoelectric-focusing analysis detected a HLA-A H chain with a unique isoelectric-focusing pattern, which does not associate with the L chain (beta(2)-microglobulin). These results suggest that the residue 48-containing interaction site on the alpha(1) domain plays acritical role in the association between HLA class I H chain and beta(2)-microglobulin. Functional studies showed that the T cells of the propositus (HLA haplotypes c d) carrying this null allele recognized its wild-type counterpart, HLA-A*010101, in her HLA-identical son that carries the HLA-A*0101 heterodimer. This is the first example of the generation of cytotoxic T cells in the absence of proliferation of CD4(+) T cells (mixed lymphocyte culture) and the description of an aberrant allele, A*0118N, that may behave as a minor histocompatibility Ag, with implications in allorecognition by cytolytic T cells in solid organ and stem cell transplantation.
机译:我们鉴定和表征了一种新型分子机制产生的HLA-A1异常等位基因(A * 0118N)。该等位基因存在于一个信息丰富的家族中,具有几乎相同的亲本HLA单倍型(cd),不同之处仅在于母本HLA单倍型(c)的一种HLA-A等位基因A * 0118N而不是父本HLA的一个核苷酸取代单倍型(a)。尽管血清学HLA分型显示“空白”,但DNA分子HLA分型检测到HLA-A * 0118N等位基因。基于序列的分型鉴定了核苷酸位置215上的胞嘧啶取代鸟嘌呤,这导致HLA-A1 H链的位置48上的脯氨酸取代了精氨酸。通过FACS分析还发现了表面蛋白表达的损失。等电聚焦分析检测到具有独特的等电聚焦模式的HLA-A H链,该模式与L链(β(2)-微球蛋白)不相关。这些结果表明,alpha(1)域上的含残基48的相互作用位点在HLA I类H链与beta(2)-微球蛋白之间的缔合中起关键作用。功能研究表明,携带该无效等位基因的性腺(HLA单倍型c d)的T细胞在其携带HLA-A * 0101异二聚体的HLA相同儿子中识别出其野生型对应物HLA-A * 010101。这是在不存在CD4(+)T细胞增殖(混合淋巴细胞培养)的情况下产生细胞毒性T细胞的第一个例子,并描述了异常等位基因A * 0118N(可能具有次要的组织相容性Ag),涉及固体器官和干细胞移植中溶细胞性T细胞的同种异体识别。

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