首页> 美国卫生研究院文献>The Journal of Experimental Medicine >MHC class I molecules form ternary complexes with calnexin and TAP and undergo peptide-regulated interaction with TAP via their extracellular domains
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MHC class I molecules form ternary complexes with calnexin and TAP and undergo peptide-regulated interaction with TAP via their extracellular domains

机译:MHC I类分子与钙粘蛋白和TAP形成三元复合物并通过其胞外域与TAP进行肽调节的相互作用

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摘要

Newly assembled heavy chain-beta 2m heterodimers of class I histocompatibility molecules associate with the endoplasmic reticulum (ER) peptide transporter, TAP, and subsequently dissociate from TAP in parallel with their transport from the ER to the Golgi apparatus. It appears that TAP-associated class I molecules are waiting to bind appropriate peptides before they dissociate from TAP and leave the ER since binding of high affinity peptides to class I molecules in vitro leads to dissociation of TAP-class I complexes. In further support of this notion, we report that limiting peptide supply through inhibition of proteasome activities prolongs the association of mouse class I molecules with TAP and concomitantly slows their transport to the Golgi apparatus. By using a series of deletion mutants and hybrid class I molecules we demonstrate that the extracellular domains of class I molecules are sufficient for their peptide-regulated interaction with TAP. Furthermore, based on the inability of an alpha 3 domain-specific mAb to recognize TAP-class I complexes and the fact that a point mutant of the Dd molecule at residue 222 is unable to bind to TAP, it is likely that a major site of interaction with TAP resides in the membrane-proximal region of the heavy chain alpha 3 domain. Finally, we examined the relationship between the interaction of mouse heavy chain- beta 2m heterodimers with TAP and with the resident ER chaperone, calnexin. Most heterodimers that bound to TAP were found to associate simultaneously with calnexin. Upon delivery of peptide to class I molecules in permeabilized cells, dissociation from TAP was observed but the interaction with calnexin was largely maintained. Therefore, both TAP and calnexin may participate in the ER retention of peptide- deficient class I molecules. However, since release from calnexin occurs after dissociation from TAP, it appears that calnexin ultimately determines if a class I molecule is to be exported from the ER.
机译:新组装的I类组织相容性分子的重链-β2m异二聚体与内质网(ER)肽转运蛋白TAP结合,随后与其从ER转运至高尔基体同时从TAP上解离。似乎与TAP相关的I类分子在从TAP解离并离开ER之前等待结合合适的肽,因为高亲和力肽在体外与I类分子的结合会导致TAP I类复合物解离。为了进一步支持这一观点,我们报道了通过抑制蛋白酶体活性来限制肽供应,从而延长了小鼠I类分子与TAP的结合,并同时减慢了它们向高尔基体的转运。通过使用一系列缺失突变体和杂合的I类分子,我们证明了I类分子的胞外域足以满足其与TAP进行肽调节的相互作用。此外,基于α3结构域特异性mAb无法识别TAP-I类复合物的事实以及残基222处Dd分子的点突变体无法与TAP结合的事实,很可能是与TAP的相互作用位于重链α3结构域的膜近端区域。最后,我们研究了小鼠重链-β2m异二聚体与TAP相互作用以及与其ER分子伴侣Calnexin之间的关系。发现大多数与TAP结合的异二聚体与钙结合蛋白同时缔合。在将肽递送至透化的细胞中的I类分子后,观察到与TAP的解离,但与钙粘蛋白的相互作用得以很大程度上维持。因此,TAP和钙联接蛋白都可能参与缺乏肽的I类分子的ER保留。但是,由于钙调蛋白的释放是在与TAP分离后发生的,因此钙调蛋白似乎最终决定了是否要从ER中输出I类分子。

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