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Invariant Chain Complexes and Clusters as Platforms for MIF Signaling

机译:不变链复合体和簇作为MIF信号传递的平台

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摘要

Invariant chain (Ii/CD74) has been identified as a surface receptor for migration inhibitory factor (MIF). Most cells that express Ii also synthesize major histocompatibility complex class II (MHC II) molecules, which depend on Ii as a chaperone and a targeting factor. The assembly of nonameric complexes consisting of one Ii trimer and three MHC II molecules (each of which is a heterodimer) has been regarded as a prerequisite for efficient delivery to the cell surface. Due to rapid endocytosis, however, only low levels of Ii-MHC II complexes are displayed on the cell surface of professional antigen presenting cells and very little free Ii trimers. The association of Ii and MHC II has been reported to block the interaction with MIF, thus questioning the role of surface Ii as a receptor for MIF on MHC II-expressing cells. Recent work offers a potential solution to this conundrum: Many Ii-complexes at the cell surface appear to be under-saturated with MHC II, leaving unoccupied Ii subunits as potential binding sites for MIF. Some of this work also sheds light on novel aspects of signal transduction by Ii-bound MIF in B-lymphocytes: membrane raft association of Ii-MHC II complexes enables MIF to target Ii-MHC II to antigen-clustered B-cell-receptors (BCR) and to foster BCR-driven signaling and intracellular trafficking.
机译:不变链(Ii / CD74)已被确定为迁移抑制因子(MIF)的表面受体。大多数表达Ii的细胞还合成主要的组织相容性复合物II类(MHC II)分子,这些分子依赖于Ii作为分子伴侣和靶向因子。由一个Ii三聚体和三个MHC II分子(每个都是异二聚体)组成的非异构复合物的组装已被视为有效递送至细胞表面的先决条件。然而,由于快速的内吞作用,在专业抗原呈递细胞的细胞表面上仅显示出低水平的Ii-MHC II复合物,而很少的游离Ii三聚体。据报道,Ii和MHC II的缔合阻止了与MIF的相互作用,因此质疑了表面Ii作为表达MHC II的细胞上MIF受体的作用。最近的工作为该难题提供了一种潜在的解决方案:细胞表面的许多Ii复合物似乎被MHC II饱和,从而使未被占用的Ii亚基成为MIF的潜在结合位点。这项工作中的一些还阐明了B淋巴细胞中Ii结合MIF进行信号转导的新方面:Ii-MHC II复合物的膜筏联合使MIF能够将Ii-MHC II靶向抗原簇化的B细胞受体( BCR)并促进BCR驱动的信号传导和细胞内运输。

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