de Lalla C, Fagioli C, Cessi F S, Smilovich D, Sitia R
DIBIT, San Raffaele Scientific Institute, Milano, Italy.
Mol Immunol. 1998 Sep;35(13):837-45. doi: 10.1016/s0161-5890(98)00073-x.
The tailpiece of secretory Ig-mu-chains (mu(s)tp) is highly conserved throughout evolution: in particular, a carboxy-terminal cysteine residue (Cys575) and a glycan linked to Asn563 are found in all species sequenced so far. Here we show that the mu(s)tp oligosaccharide moieties are important for the binding of J-chains and for the process of IgM polymerization. In the absence of the mu(s)tp glycans, pentamers cannot be assembled and polymers containing six or more subunits are secreted. Despite their increased valency, these molecules have a lower association rate with antigen than wild-type polymers. Unexpectedly, the C-terminal oligosaccharides also affect kinetic parameters on unpolymerized subunits. Thus, monomers lacking the C-terminal sugars because of either site-directed mutagenesis or selective enzymatic deglycosylation with endoglycosidase H, have a lower k(on) for the antigen. Taken together, our results indicate that the C-terminal mu-chain glycans can shape the structure of mu(s2)L2 subunits and their further assembly into polymers.
分泌型Ig-μ链(μ(s)tp)的尾段在整个进化过程中高度保守:特别是,在迄今为止测序的所有物种中都发现了一个羧基末端半胱氨酸残基(Cys575)和一个与Asn563相连的聚糖。在此我们表明,μ(s)tp寡糖部分对于J链的结合以及IgM聚合过程很重要。在没有μ(s)tp聚糖的情况下,五聚体无法组装,且会分泌出含有六个或更多亚基的聚合物。尽管这些分子的价态增加,但其与抗原的结合速率低于野生型聚合物。出乎意料的是,C末端寡糖也会影响未聚合亚基的动力学参数。因此,由于定点诱变或用内切糖苷酶H进行选择性酶促去糖基化而缺乏C末端糖的单体,其与抗原的k(on)较低。综上所述,我们的结果表明,C末端μ链聚糖可以塑造μ(s2)L2亚基的结构及其进一步组装成聚合物的过程。