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转染的L细胞意外表达一种独特的混合同种型II类主要组织相容性复合体分子。

Unexpected expression of a unique mixed-isotype class II MHC molecule by transfected L-cells.

作者信息

Germain R N, Quill H

出版信息

Nature. 1986;320(6057):72-5. doi: 10.1038/320072a0.

Abstract

Class II (Ia) major histocompatibility complex (MHC) molecules are heterodimeric integral membrane proteins composed of non-covalently linked alpha and beta glycoprotein chains. Studies of both normal cells and L-cell transfectants have shown that neither alpha- nor beta-chains are found on the cell surface alone, and that alpha beta dimers are required for membrane expression. In both mouse and man, several distinct non-allelic alpha and beta genes exist. Analysis of Ia molecules by immunoprecipitation and two-dimensional gel electrophoresis has demonstrated apparently selective association of particular pairs of the various alpha- and beta-chains to form the expressed class II isotypes I-A and I-E (mouse) or DQ, DP and DR (human). Because the various alpha- or beta-chains encoded by distinct loci exist in many allelic forms within a species, such specific pairing suggests a special role for isotypically conserved regions of each chain in the association process. In attempting to localize such putative assembly-controlling regions using the technique of DNA-mediated gene transfer, various combinations of murine alpha and beta genes were introduced into L-cells. Here we report the unexpected observation, following transfection, of mixed-isotype (Ad beta Ea/k alpha) molecules on the L-cell membrane and document that the formation of this pair is strongly influenced by allelic polymorphism of the A beta chain.

摘要

II类(Ia)主要组织相容性复合体(MHC)分子是由非共价连接的α和β糖蛋白链组成的异二聚体整合膜蛋白。对正常细胞和L细胞转染体的研究表明,α链和β链单独都不会出现在细胞表面,并且αβ二聚体是膜表达所必需的。在小鼠和人类中,都存在几个不同的非等位α和β基因。通过免疫沉淀和二维凝胶电泳对Ia分子进行分析,结果表明各种α链和β链的特定对之间存在明显的选择性结合,从而形成表达的II类同种型I-A和I-E(小鼠)或DQ、DP和DR(人类)。由于由不同基因座编码的各种α链或β链在一个物种内以许多等位基因形式存在,这种特异性配对表明每条链的同种型保守区域在结合过程中具有特殊作用。在尝试使用DNA介导的基因转移技术定位这种假定的装配控制区域时,将小鼠α和β基因的各种组合导入L细胞。在此我们报告转染后在L细胞膜上意外观察到混合同种型(AdβEa/kα)分子,并证明这一对分子的形成受到Aβ链等位基因多态性的强烈影响。

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