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可溶性HLA-G分子。一种在外周血单核细胞和人滋养层细胞中编码它的选择性剪接的HLA-G mRNA形式候选物。

Soluble HLA-G molecule. An alternatively spliced HLA-G mRNA form candidate to encode it in peripheral blood mononuclear cells and human trophoblasts.

作者信息

Moreau P, Carosella E, Teyssier M, Prost S, Gluckman E, Dausset J, Kirszenbaum M

机构信息

CEA-DSV-DPTE, Laboratoire d'Immunoradiobiologie, Hôpital Saint-Louis, Paris, France.

出版信息

Hum Immunol. 1995 Jul;43(3):231-6. doi: 10.1016/0198-8859(95)00009-s.

Abstract

The HLA-G nonclassic MHC class I gene expressed at the maternal-fetal interface may be involved in cell protection against NK cell lysis. HLA-G mRNA is observed in different adult or fetal human cells and exhibits four alternative forms: HLA-G1, HLA-G2, HLA-G3, and HLA-G4 lacking, respectively, exon 7; exons 7 and 3, exons 7, 3, and 4; exons 7 and 4. Because exon 5 encodes the transmembrane domain of the HLA-G antigen, none of these transcripts could give a soluble form as detected in supernatant of trophoblasts. In this report, we describe an additional alternatively spliced for of HLA-G transcript (HLA-G5) present in adult PBMCs and first-trimester trophoblasts that contains intron 4. Moreover, as with all other transcripts, HLA-G5, is devoid of exon 7. Its relative frequency is, respectively, approximately 1:8 and approximately 1:26 in adult PBMCs and first-trimester trophoblasts. The presence of intron 4 generates a stop codon that excludes transmembrane region (exon 5) of the HLA-G molecule and therefore might produce a soluble antigen. These results are discussed with regard to data on soluble forms of classic HLA antigens and the possible role of HLA-G.

摘要

在母胎界面表达的HLA - G非经典MHC I类基因可能参与细胞抵御自然杀伤细胞(NK细胞)裂解的保护过程。在不同的成人或胎儿人类细胞中可观察到HLA - G信使核糖核酸(mRNA),并且它呈现出四种可变形式:HLA - G1、HLA - G2、HLA - G3和HLA - G4,它们分别缺失外显子7;外显子7和3;外显子7、3和4;外显子7和4。由于外显子5编码HLA - G抗原的跨膜结构域,这些转录本均无法产生如在滋养层细胞上清液中检测到的可溶性形式。在本报告中,我们描述了成人外周血单个核细胞(PBMC)和孕早期滋养层细胞中存在的一种额外的HLA - G转录本可变剪接形式(HLA - G5),它包含内含子4。此外,与所有其他转录本一样,HLA - G5缺失外显子7。其相对频率在成人PBMC和孕早期滋养层细胞中分别约为1:8和约为1:26。内含子4的存在产生了一个终止密码子,该密码子排除了HLA - G分子的跨膜区域(外显子5),因此可能产生一种可溶性抗原。我们结合经典HLA抗原可溶性形式的数据以及HLA - G的可能作用对这些结果进行了讨论。

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