首页> 外文期刊>The Journal of Experomental Medicine >Disparate interaction of peptide ligand with nascent versus mature class I major histocompatibility complex molecules: comparisons of peptide binding to alternative forms of Ld in cell lysates and the cell surface.
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Disparate interaction of peptide ligand with nascent versus mature class I major histocompatibility complex molecules: comparisons of peptide binding to alternative forms of Ld in cell lysates and the cell surface.

机译:肽配体与新生的与成熟的I类主要组织相容性复杂分子的不同相互作用:比较肽与细胞裂解液和细胞表面中Ld的其他形式的结合。

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To determine the mechanism and structural consequences of peptide binding to class I molecules, we have studied the Ld molecule of the mouse. Previous studies have shown that a significant proportion of surface and intracellular Ld molecules can be detected in an alternative conformation designated Ldalt. Ldalt molecules are non-ligand associated and show weak if any beta 2-microglobulin (beta 2m) association. We report here that Ld molecules have a relatively rapid surface turnover compared with other class I molecules and that exogenous peptide dramatically prolongs Ld surface half-life. By contrast, Ldalt molecules are stably expressed on the surface and their half-life is unaffected by exogenous peptide. To study the surface interaction of peptide with Ld, live cells were incubated with iodinated peptides and Ld molecules were precipitated from cells precoated with monoclonal antibody before lysis. Using this assay, peptide binding to surface Ld molecules was found not to depend upon exchange with exogenous beta 2m, but did correlate with the level of beta 2m association. To study the intracellular interaction of peptide with Ld, cell lysates were used. In cell lysates, peptide was found to convert Ldalt molecules to properly folded Ld. This peptide-induced folding was almost complete at earlier but not later time points in pulse-chase analyses. Furthermore, conversion of Ldalt to Ld was found to affect almost exclusively immature (Endo Hs) class I molecules. Thus intrinsic properties of immature Ldalt molecules or their associated chaperonins are maintained in cell lysates that allow them to undergo de novo folding in vitro. These combined results demonstrate that immature Ldalt molecules are precursors awaiting constituents such as peptide and beta 2m that influence folding, whereas surface Ldalt molecules appear refractory to association with peptide, beta 2m, and consequent folding.
机译:为了确定肽与I类分子结合的机制和结构后果,我们研究了小鼠的Ld分子。先前的研究表明,可以在名为Ldalt的替代构象中检测到很大比例的表面和细胞内Ld分子。 Ldalt分子是非配体缔合的,如果有任何β2-微球蛋白(beta 2m)缔合,则显示弱。我们在这里报告,与其他I类分子相比,Ld分子具有相对较快的表面更新,并且外源肽可显着延长Ld表面的半衰期。相反,Ldalt分子在表面上稳定表达,并且其半衰期不受外源肽的影响。为了研究肽与Ld的表面相互作用,将活细胞与碘化肽一起孵育,并在裂解前从单克隆抗体预包被的细胞中沉淀Ld分子。使用该测定法,发现与表面Ld分子结合的肽不取决于与外源β2m的交换,但确实与β2m缔合水平相关。为了研究肽与Ld的细胞内相互作用,使用了细胞裂解液。在细胞裂解物中,发现肽将Ldalt分子转化为正确折叠的Ld。在脉冲追逐分析中,这种肽诱导的折叠几乎在较早的时间点完成,但没有较晚的时间点完成。此外,发现将Ldalt转化为Ld几乎仅影响未成熟的(Endo Hs)I类分子。因此,未成熟的Ldalt分子或其相关伴侣蛋白的内在特性在细胞裂解物中得以维持,从而使它们在体外可以从头折叠。这些综合结果表明,未成熟的Ldalt分子是等待诸如肽和β2m之类影响折叠的成分的前体,而表面Ldalt分子则难以与肽,β2m结合并因此折叠。

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