Bonnerot C, Marks M S, Cosson P, Robertson E J, Bikoff E K, Germain R N, Bonifacino J S
Cell Biology and Metabolism Branch, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD 20892.
EMBO J. 1994 Feb 15;13(4):934-44. doi: 10.1002/j.1460-2075.1994.tb06338.x.
Class II molecules of the major histocompatibility complex (MHC) are composed of two polymorphic glycoprotein chains (alpha and beta), that associate in the ER with a third, non-polymorphic glycoprotein known as the invariant chain (Ii). We have examined the relationship between the intracellular transport and physico-chemical characteristics of various combinations of murine alpha, beta and Ii chains. Biochemical and morphological analyses of transfected fibroblasts expressing class II MHC chains show that both unassembled alpha and beta chains, as well as a large fraction of alpha+beta complexes synthesized in the absence of Ii chain, are retained in the ER in association with the immunoglobulin heavy chain binding protein, BiP. Analyses by sedimentation velocity on sucrose gradients show that most incompletely assembled class II MHC species exist as high molecular weight aggregates in both transfected fibroblasts and spleen cells from mice carrying a disruption of the Ii chain gene. This is in contrast to the sedimentation properties of alpha beta Ii complexes from normal mice, which migrate as discrete, stoichiometric complexes of M(r) approximately 200,000-300,000. These observations suggest that assembly with the Ii chain prevents accumulation of aggregated alpha and beta chains in the ER, which might relate to the known ability of the Ii chain to promote exit of class II MHC molecules from the ER.
主要组织相容性复合体(MHC)的II类分子由两条多态性糖蛋白链(α链和β链)组成,它们在内质网(ER)中与第三条非多态性糖蛋白(即恒定链,Ii)结合。我们研究了小鼠α链、β链和Ii链各种组合的细胞内运输与物理化学特性之间的关系。对表达II类MHC链的转染成纤维细胞进行的生化和形态学分析表明,未组装的α链和β链,以及在没有Ii链的情况下合成的大部分α + β复合物,都与免疫球蛋白重链结合蛋白BiP一起保留在内质网中。通过蔗糖梯度沉降速度分析表明,在携带Ii链基因破坏的小鼠的转染成纤维细胞和脾细胞中,大多数组装不完全的II类MHC种类都以高分子量聚集体的形式存在。这与正常小鼠的αβIi复合物的沉降特性形成对比,正常小鼠的αβIi复合物以分子量约为200,000 - 300,000的离散化学计量复合物形式迁移。这些观察结果表明,与Ii链组装可防止内质网中α链和β链聚集体的积累,这可能与Ii链促进II类MHC分子从内质网中排出的已知能力有关。