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小鼠IgD的免疫增强特性存在于其Cδ1和Cδ3区域:IgD相关聚糖的潜在作用。

The immunoaugmenting properties of murine IgD reside in its C delta 1 and C delta 3 regions: potential role for IgD-associated glycans.

作者信息

Amin A R, Tamma S M, Swenson C D, Kieda C C, Oppenheim J D, Finkelman F D, Coico R F

机构信息

Department of Pathology, New York University School of Medicine, NY 10016.

出版信息

Int Immunol. 1993 Jun;5(6):607-14. doi: 10.1093/intimm/5.6.607.

Abstract

IgD receptor (IgD-R) bearing CD4+ T cells with immunoaugmenting properties in vivo are induced in mice within 24 h after a single injection of dimeric or aggregated IgD. In the present study, we sought to identify the region(s) of IgD responsible for upregulation of IgD-R and for the immunoaugmenting effect of IgD. IgD-R can be upregulated on CD4+ T cells in vitro and in vivo by glutaraldehyde-aggregated mutant IgD or by fragments of enzymatically digested IgD molecules possessing either the C delta 1 domain (Fd delta) or the C delta 3 domain (Fc delta). Neoglycoproteins (D-galactose--BSA and N-acetyl-D-glucosamine--BSA), can competitively block upregulation of IgD-R by IgD in vitro. Furthermore, when injected 1 day before antigen, the aggregated IgD derived molecules, KWD1 (which lacks C delta 1), KWD6 (which lacks C delta 1 plus C delta-hinge), and Fab delta can all cause augmentation of antigen-specific primary and secondary antibody responses comparable to that achieved with intact aggregated IgD. Moreover, the immunoaugmenting effect of intact oligomeric IgD molecules in primary antibody responses is competitively blocked by simultaneous injection of monomeric forms of KWD6 and Fab delta. These results suggest that the binding of IgD to IgD-R, previously shown to be dependent on N-glycans present on Fd delta and Fc delta regions, also contributes to the upregulation of IgD-R and immunoagumentation.

摘要

在小鼠体内,单次注射二聚体或聚合IgD后24小时内可诱导产生具有免疫增强特性的携带IgD受体(IgD-R)的CD4⁺T细胞。在本研究中,我们试图确定IgD中负责上调IgD-R以及产生IgD免疫增强作用的区域。在体外和体内,戊二醛聚合的突变型IgD或具有Cδ1结构域(Fdδ)或Cδ3结构域(Fcδ)的酶切IgD分子片段均可上调CD4⁺T细胞上的IgD-R。新糖蛋白(D-半乳糖-BSA和N-乙酰-D-葡萄糖胺-BSA)可在体外竞争性阻断IgD对IgD-R的上调作用。此外,在抗原注射前1天注射时,聚合IgD衍生分子KWD1(缺乏Cδ1)、KWD6(缺乏Cδ1加Cδ铰链区)和Fabδ均可引起抗原特异性初次和二次抗体反应增强,其效果与完整聚合IgD相当。此外,同时注射KWD6和Fabδ的单体形式可竞争性阻断完整寡聚IgD分子在初次抗体反应中的免疫增强作用。这些结果表明,先前显示IgD与IgD-R的结合依赖于Fdδ和Fcδ区域上存在的N-聚糖,这也有助于IgD-R的上调和免疫增强。

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