Department of Biochemistry, University of Illinois Urbana-Champaign, Urbana, IL.
Department of Biomedical and Translational Sciences, Carle Illinois College of Medicine, University of Illinois Urbana-Champaign, Urbana, IL.
J Immunol. 2024 Jul 15;213(2):226-234. doi: 10.4049/jimmunol.2300717.
Secretory (S) IgA is the predominant mucosal Ab that protects host epithelial barriers and promotes microbial homeostasis. SIgA production occurs when plasma cells assemble two copies of monomeric IgA and one joining chain (JC) to form dimeric (d) IgA, which is bound by the polymeric Ig receptor (pIgR) on the basolateral surface of epithelial cells and transcytosed to the apical surface. There, pIgR is proteolytically cleaved, releasing SIgA, a complex of the dIgA and the pIgR ectodomain, called the secretory component (SC). The pIgR's five Ig-like domains (D1-D5) undergo a conformational change upon binding dIgA, ultimately contacting four IgA H chains and the JC in SIgA. In this study, we report structure-based mutational analysis combined with surface plasmon resonance binding assays that identify key residues in mouse SC D1 and D3 that mediate SC binding to dIgA. Residues in D1 CDR3 are likely to initiate binding, whereas residues that stabilize the D1-D3 interface are likely to promote the conformational change and stabilize the final SIgA structure. Additionally, we find that the JC's three C-terminal residues play a limited role in dIgA assembly but a significant role in pIgR/SC binding to dIgA. Together, these results inform models for the intricate mechanisms underlying IgA transport across epithelia and functions in the mucosa.
分泌型 (S) IgA 是保护宿主上皮屏障和促进微生物稳态的主要黏膜抗体。当浆细胞组装两个单体 IgA 和一个连接链 (JC) 形成二聚体 (d) IgA 时,就会发生 SIgA 产生,该二聚体 (d) IgA 被上皮细胞基底外侧表面的多聚免疫球蛋白受体 (pIgR) 结合并转位到顶端表面。在那里,pIgR 被蛋白水解切割,释放出 SIgA,即 dIgA 和 pIgR 胞外结构域的复合物,称为分泌成分 (SC)。pIgR 的五个免疫球蛋白样结构域 (D1-D5) 在与 dIgA 结合时发生构象变化,最终与 SIgA 中的四个 IgA H 链和 JC 接触。在这项研究中,我们报告了基于结构的突变分析结合表面等离子体共振结合分析,确定了介导 SC 与 dIgA 结合的小鼠 SC D1 和 D3 中的关键残基。D1 CDR3 中的残基可能会启动结合,而稳定 D1-D3 界面的残基可能会促进构象变化并稳定最终的 SIgA 结构。此外,我们发现 JC 的三个 C 末端残基在 dIgA 组装中发挥有限的作用,但在 pIgR/SC 与 dIgA 结合中发挥重要的作用。总之,这些结果为 IgA 穿过上皮细胞运输和在黏膜中的功能的复杂机制提供了模型。