首页> 美国卫生研究院文献>The Journal of Experimental Medicine >Inhibition of invariant chain (Ii)-calnexin interaction results in enhanced degradation of Ii but does not prevent the assembly of alpha beta Ii complexes
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Inhibition of invariant chain (Ii)-calnexin interaction results in enhanced degradation of Ii but does not prevent the assembly of alpha beta Ii complexes

机译:不变链(Ii)-钙粘蛋白相互作用的抑制导致Ii降解增强但不会阻止alpha beta Ii复合物的组装

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摘要

Calnexin is a resident protein of the endoplasmic reticulum (ER) that associates with nascent protein chains. Among the newly synthesized integral membrane proteins known to bind to calnexin is invariant chain (Ii), and Ii release from calnexin coincides with proper assembly with major histocompatibility complex (MHC) class II heterodimers. Although calnexin association with several membrane glycoproteins depends on interactions involving N-linked glycans, we previously reported that a truncation mutant of mouse Ii (mIi1-107) lacking both N-glycosylation sites was highly effective in associating with MHC class II heterodimers and escorting these dimers through the secretory pathway. This could indicate that calnexin, despite binding to both Ii and class II, is not necessary for the proper interaction of these proteins, or that in contrast to most membrane glycoproteins, the N-linked glycans of Ii are not critical to its interaction with this chaperone. To examine this issue, we have directly explored the binding of calnexin to both Ii truncation mutants lacking the typical sites of N- glycosylation or Ii produced in cells treated with tunicamycin to prevent glycan addition. These experiments revealed that either method of eliminating N-linked carbohydrates on Ii also inhibited association with calnexin. A lumenally truncated form of Ii (mIi1-131) that still has N-linked carbohydrates showed a decreased affinity for calnexin compared with intact Ii, however, indicating that calnexin-Ii binding is not determined solely by the sugar moieties. All forms of Ii lacking N-linked sugars and showing defective association with calnexin also had enhanced rates of preendosomal degradation. Despite this effect on degradation rate, tunicamycin treatment did not inhibit the association of class II with glycan-free Ii. These data support the view that calnexin is not an absolute requirement for the proper assembly of class II-Ii nonamers, but rather acts primarily to retain Ii in the ER and to inhibit its degradation. These two properties of calnexin-Ii interaction may help ensure that sufficient intact Ii is available for efficient inactivation of the binding sites of newly synthesized class II molecules, while limiting the ability of excess free Ii to alter the transport properties of the early endocytic pathway.
机译:钙结合蛋白是与新生蛋白链相关的内质网(ER)的驻留蛋白。在新合成的已知与钙结合蛋白结合的整合膜蛋白中,有不变链(Ii),并且从钙结合蛋白释放的Ii与主要的组织相容性复合物(MHC)II类异二聚体正确组装。尽管钙调蛋白与几种膜糖蛋白的结合取决于涉及N-连接的聚糖的相互作用,但我们先前曾报道,缺少两个N-糖基化位点的小鼠Ii截短突变体(mIi1-107)在与MHC II类异二聚体缔合并保驾护航方面非常有效。通过分泌途径二聚体。这可能表明,尽管钙结合蛋白与Ii和II类都结合,但对于这些蛋白质的正确相互作用并不是必需的,或者与大多数膜糖蛋白相反,Ii的N-连接聚糖对其与其相互作用并不重要。伴侣。为了研究这个问题,我们直接探索了钙调蛋白与缺乏典型的N-糖基化位点或在用衣霉素处理的细胞中产生的Ii以防止聚糖添加的Ii截短突变体上的结合。这些实验表明,消除Ii上N-连接的碳水化合物的任何一种方法也都抑制了与钙合蛋白的缔合。与完整的Ii相比,仍然具有N-连接的碳水化合物的腔内截短形式的Ii(mIi1-131)显示出对钙粘蛋白的亲和力降低,但是,这表明钙粘蛋白-Ii的结合并不完全由糖部分决定。所有形式的Ii都缺乏N-连接的糖,并显示与钙连接蛋白的结合不良,也增加了前体降解的速度。尽管对降解速率有此影响,但衣霉素处理并未抑制II类与无糖Ii的结合。这些数据支持这样的观点,即钙调蛋白不是正确组装II-Ii类九聚体的绝对要求,而是主要起将Ii保留在ER中并抑制其降解的作用。 Calnexin-Ii相互作用的这两个特性可以帮助确保足够的完整Ii可用于有效地灭活新合成的II类分子的结合位点,同时限制过量的游离Ii改变早期内吞途径的转运特性的能力。

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