Ghumra Ashfaq, Shi Jianguo, Mcintosh Richard S, Rasmussen Ingunn B, Braathen Ranveig, Johansen Finn-Eirik, Sandlie Inger, Mongini Patricia K, Areschoug Thomas, Lindahl Gunnar, Lewis Melanie J, Woof Jenny M, Pleass Richard J
Institute of Genetics, Queens Medical Centre, University of Nottingham, Nottingham, UK.
Eur J Immunol. 2009 Apr;39(4):1147-56. doi: 10.1002/eji.200839184.
Here we unravel the structural features of human IgM and IgA that govern their interaction with the human Fcalpha/mu receptor (hFcalpha/muR). Ligand polymerization status was crucial for the interaction, because hFcalpha/muR binding did not occur with monomeric Ab of either class. hFcalpha/muR bound IgM with an affinity in the nanomolar range, whereas the affinity for dimeric IgA (dIgA) was tenfold lower. Panels of mutant IgM and dIgA were used to identify regions critical for hFcalpha/muR binding. IgM binding required contributions from both Cmu3 and Cmu4 Fc domains, whereas for dIgA, an exposed loop in the Calpha3 domain was crucial. This loop, comprising residues Pro440-Phe443, lies at the Fc domain interface and has been implicated in the binding of host receptors FcalphaRI and polymeric Ig receptor (pIgR), as well as IgA-binding proteins produced by certain pathogenic bacteria. Substitutions within the Pro440-Phe443 loop resulted in loss of hFcalpha/muR binding. Furthermore, secretory component (SC, the extracellular portion of pIgR) and bacterial IgA-binding proteins were shown to inhibit the dIgA-hFcalpha/muR interaction. Therefore, we have identified a motif in the IgA-Fc inter-domain region critical for hFcalpha/muR interaction, and highlighted the multi-functional nature of a key site for protein-protein interaction at the IgA Fc domain interface.
在此,我们解析了人类IgM和IgA的结构特征,这些特征决定了它们与人类Fcalpha/mu受体(hFcalpha/muR)的相互作用。配体的聚合状态对于这种相互作用至关重要,因为这两类单体抗体均不能与hFcalpha/muR结合。hFcalpha/muR与IgM结合的亲和力处于纳摩尔范围,而对二聚体IgA(dIgA)的亲和力则低10倍。利用突变型IgM和dIgA文库来确定对hFcalpha/muR结合至关重要的区域。IgM的结合需要Cmu3和Cmu4 Fc结构域的共同作用,而对于dIgA,Calpha3结构域中的一个暴露环至关重要。这个环由Pro440 - Phe443残基组成,位于Fc结构域界面,并且与宿主受体FcalphaRI和多聚免疫球蛋白受体(pIgR)的结合以及某些病原菌产生的IgA结合蛋白有关。Pro440 - Phe443环内的替换导致hFcalpha/muR结合丧失。此外,分泌成分(SC,pIgR的细胞外部分)和细菌IgA结合蛋白被证明可抑制dIgA与hFcalpha/muR的相互作用。因此,我们确定了IgA - Fc结构域间区域中对于hFcalpha/muR相互作用至关重要的基序,并突出了IgA Fc结构域界面蛋白质 - 蛋白质相互作用关键位点的多功能性质。