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一种重组单链人II类主要组织相容性复合体分子(HLA-DR1),作为α链、β链和抗原肽的共价连接异源三聚体,在体外具有免疫原性,且对细菌超抗原的亲和力降低。

A recombinant single-chain human class II MHC molecule (HLA-DR1) as a covalently linked heterotrimer of alpha chain, beta chain, and antigenic peptide, with immunogenicity in vitro and reduced affinity for bacterial superantigens.

作者信息

Zhu X, Bavari S, Ulrich R, Sadegh-Nasseri S, Ferrone S, McHugh L, Mage M

机构信息

Laboratory of Biochemistry, DCBDC, NCI, NIH, Bethesda, MD 20892, USA.

出版信息

Eur J Immunol. 1997 Aug;27(8):1933-41. doi: 10.1002/eji.1830270817.

Abstract

Major histocompatibility complex (MHC) class II molecules bind to numerous peptides and display these on the cell surface for T cell recognition. In a given immune response, receptors on T cells recognize antigenic peptides that are a minor population of MHC class II-bound peptides. To control which peptides are presented to T cells, it may be desirable to use recombinant MHC molecules with covalently bound antigenic peptides. To study T cell responses to such homogeneous peptide-MHC complexes, we engineered an HLA-DR1 cDNA coding for influenza hemagglutinin, influenza matrix, or HIV p24 gag peptides covalently attached via a peptide spacer to the N terminus of the DR1 beta chain. Co-transfection with DR alpha cDNA into mouse L cells resulted in surface expression of HLA-DR1 molecules that reacted with monoclonal antibodies (mAb) specific for correctly folded HLA-DR epitopes. This suggested that the spacer and peptide did not alter expression or folding of the molecule. We then engineered an additional peptide spacer between the C terminus of a truncated beta chain (without transmembrane or cytoplasmic domains) and the N terminus of full-length DR alpha chain. Transfection of this cDNA into mouse L cells resulted in surface expression of the entire covalently linked heterotrimer of peptide, beta chain, and alpha chain with the expected molecular mass of approximately 66 kDa. These single-chain HLA-DR1 molecules reacted with mAb specific for correctly folded HLA-DR epitopes, and identified one mAb with [MHC + peptide] specificity. Affinity-purified soluble secreted single-chain molecules with truncated alpha chain moved in electrophoresis as compact class II MHC dimers. Cell surface two-chain or single-chain HLA-DR1 molecules with a covalent HA peptide stimulated HLA-DR1-restricted HA-specific T cells. They were immunogenic in vitro for peripheral blood mononuclear cells. The two-chain and single-chain HLA-DR1 molecules with covalent HA peptide had reduced binding for the bacterial superantigens staphylococcal enterotoxin A and B and almost no binding for toxic shock syndrome toxin-1. The unique properties of these engineered HLA-DR1 molecules may facilitate our understanding of the complex nature of antigen recognition and aid in the development of novel vaccines with reduced superantigen binding.

摘要

主要组织相容性复合体(MHC)II类分子可结合众多肽段,并将这些肽段展示在细胞表面以供T细胞识别。在特定的免疫反应中,T细胞上的受体识别的抗原肽只是与MHC II类分子结合的肽段中的一小部分。为了控制呈递给T细胞的肽段,使用共价结合了抗原肽的重组MHC分子可能是很有必要的。为了研究T细胞对这种均一的肽-MHC复合物的反应,我们构建了编码流感血凝素、流感基质蛋白或HIV p24 gag肽的HLA-DR1 cDNA,这些肽段通过一个肽间隔区共价连接到DR1 β链的N端。将其与DR α cDNA共转染到小鼠L细胞中,可导致HLA-DR1分子在细胞表面表达,这些分子能与针对正确折叠的HLA-DR表位的单克隆抗体(mAb)发生反应。这表明间隔区和肽段并未改变分子的表达或折叠。然后,我们在截短的β链(无跨膜或胞质结构域)的C端与全长DR α链的N端之间构建了一个额外的肽间隔区。将该cDNA转染到小鼠L细胞中,可导致肽段、β链和α链的整个共价连接的异源三聚体在细胞表面表达,其预期分子量约为66 kDa。这些单链HLA-DR1分子能与针对正确折叠的HLA-DR表位的mAb发生反应,并鉴定出一种具有[MHC + 肽]特异性的mAb。亲和纯化的截短α链的可溶性分泌单链分子在电泳中迁移时呈现紧密的II类MHC二聚体形式。细胞表面带有共价HA肽的双链或单链HLA-DR1分子可刺激受HLA-DR1限制的HA特异性T细胞。它们在体外对外周血单核细胞具有免疫原性。带有共价HA肽的双链和单链HLA-DR1分子与细菌超抗原葡萄球菌肠毒素A和B的结合减少,与中毒性休克综合征毒素-1几乎不结合。这些工程化的HLA-DR1分子的独特性质可能有助于我们理解抗原识别的复杂本质,并有助于开发具有降低超抗原结合能力的新型疫苗。

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