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H2-O缺陷小鼠中主要组织相容性复合体II类肽装载的改变。

Altered major histocompatibility complex class II peptide loading in H2-O-deficient mice.

作者信息

Perraudeau M, Taylor P R, Stauss H J, Lindstedt R, Bygrave A E, Pappin D J, Ellmerich S, Whitten A, Rahman D, Canas B, Walport M J, Botto M, Altmann D M

机构信息

Transplantation Biology Group, MRC Clinical Sciences Centre, Imperial College School of Medicine, Hammersmith Hospital, London, GB.

出版信息

Eur J Immunol. 2000 Oct;30(10):2871-80. doi: 10.1002/1521-4141(200010)30:10<2871::AID-IMMU2871>3.0.CO;2-B.

DOI:10.1002/1521-4141(200010)30:10<2871::AID-IMMU2871>3.0.CO;2-B
PMID:11069069
Abstract

The biosynthesis of MHC class II/peptide complexes involves classical, cell surface MHC products as well as the intracellular component H2-M, required for the removal of invariant chain-derived CLIP and for peptide loading. The function of another intracellular class II heterodimer, H2-O, is the matter of some controversy. The physical association of H2-O with H2-M and co-localization in class II+ vesicles suggest a related function in peptide exchange. Furthermore, the distinctive thymic distribution of H2-O raises the possibility of a specialized role in T cell thymic selection. To investigate the role of H2-O in vivo we generated mice carrying a targeted disruption in the H2-Oa gene. No evidence was obtained for a defect in removal of CLIP. However, the array of endogenous peptides bound by class II was altered and a defect in antigen presentation through H2-A to T cells was seen on the 129/Sv/ C57BL/6 mixed strain background but not in 129/Sv pure strain mice. Furthermore, H2-O-null mice showed enhanced selection of CD4+ single positive thymocytes. The findings indicate that H2-O interacts with H2-M in peptide editing but that the genetic background in which H2-O deficiency is manifest is also important. Overall, the experiments indicate that H2-O/HLA-DO should be regarded as neither up-regulating nor down-regulating the DM-dependent release of CLIP, but as a modulator of peptide editing, determining the presenting cell type specific peptide profile able to retain stability in the class II groove.

摘要

MHC II类/肽复合物的生物合成涉及经典的细胞表面MHC产物以及细胞内成分H2-M,后者对于去除恒定链衍生的CLIP和肽装载是必需的。另一种细胞内II类异二聚体H2-O的功能存在一些争议。H2-O与H2-M的物理结合以及在II类阳性囊泡中的共定位表明在肽交换中具有相关功能。此外,H2-O在胸腺中的独特分布增加了其在T细胞胸腺选择中发挥特殊作用的可能性。为了研究H2-O在体内的作用,我们构建了携带H2-Oa基因靶向破坏的小鼠。未获得CLIP去除缺陷的证据。然而,与II类结合的内源性肽阵列发生了改变,并且在129/Sv/C57BL/6混合品系背景下观察到通过H2-A向T细胞的抗原呈递缺陷,但在129/Sv纯品系小鼠中未观察到。此外,H2-O基因敲除小鼠显示CD4 +单阳性胸腺细胞的选择增强。这些发现表明H2-O在肽编辑中与H2-M相互作用,但H2-O缺陷表现出的遗传背景也很重要。总体而言,实验表明H2-O/HLA-DO不应被视为上调或下调依赖DM的CLIP释放,而应被视为肽编辑的调节剂,决定能够在II类凹槽中保持稳定性的呈递细胞类型特异性肽谱。

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