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首页> 外文期刊>Immunology: An Official Journal of the British Society for Immunology >DM influences the abundance of major histocompatibility complex class II alleles with low affinity for class II-associated invariant chain peptides via multiple mechanisms.
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DM influences the abundance of major histocompatibility complex class II alleles with low affinity for class II-associated invariant chain peptides via multiple mechanisms.

机译:DM通过多种机制影响与II类相关的恒定链肽亲和力低的主要组织相容性复杂的II类等位基因的丰度。

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摘要

DM catalyses class II-associated invariant chain peptide (CLIP) release, edits the repertoire of peptides bound to major histocompatibility complex (MHC) class II molecules, affects class II structure, and thereby modulates binding of conformation-sensitive anti-class II antibodies. Here, we investigate the ability of DM to enhance the cell surface binding of monomorphic antibodies. We show that this enhancement reflects increases in cell surface class II expression and total cellular abundance, but notably these effects are selective for particular alleles. Evidence from analysis of cellular class II levels after cycloheximide treatment and from pulse-chase experiments indicates that DM increases the half-life of affected alleles. Unexpectedly, the pulse-chase experiments also revealed an early effect of DM on assembly of these alleles. The allelically variant feature that correlates with susceptibility to these DM effects is low affinity for CLIP; DM-dependent changes in abundance are reduced by invariant chain (CLIP) mutants that enhance CLIP binding to class II. We found evidence that DM mediates rescue of peptide-receptive DR0404 molecules from inactive forms in vitro and evidence suggesting that a similar process occurs in cells. Thus, multiple mechanisms, operating along the biosynthetic pathway of class II molecules, contribute to DM-mediated increases in the abundance of low-CLIP-affinity alleles.
机译:DM催化II类相关的恒定链肽(CLIP)释放,编辑与主要组织相容性复合物(MHC)II类分子结合的肽库,影响II类结构,从而调节构象敏感的抗II类抗体的结合。在这里,我们研究了DM增强单态抗体的细胞表面结合的能力。我们表明,这种增强反映了细胞表面II类表达和总细胞丰度的增加,但是值得注意的是,这些作用对特定等位基因是选择性的。环己酰亚胺处理后细胞II类水平分析的结果以及脉冲追踪实验的证据表明DM可延长受影响等位基因的半衰期。出乎意料的是,脉冲追踪实验还揭示了DM对这些等位基因组装的早期作用。与这些DM效应的敏感性相关的等位变体特征是对CLIP的亲和力低;通过增强CLIP与II类结合的恒定链(CLIP)突变体可减少DM依赖性的丰度变化。我们发现有证据表明DM可以在体外从非活性形式中介导肽受体DR0404分子的拯救,并且有证据表明在细胞中会发生类似的过程。因此,沿着II类分子的生物合成途径起作用的多种机制有助于DM介导的低CLIP亲和力等位基因丰度的增加。

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