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Localization of the binding site for the monocyte immunoglobulin (Ig) A- Fc receptor (CD89) to the domain boundary between Calpha2 and Calpha3 in human IgA1

机译:单核细胞免疫球蛋白(Ig)A-Fc受体(CD89)的结合位点在人IgA1中Calpha2和Calpha3之间的域边界的定位

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摘要

Immunoglobulin (Ig) A serves as the first line of humoral defense at all mucosal surfaces and is present in large quantities of blood. In playing its role in humoral immunity, IgA interacts with a variety of effector molecules present both in serum and on the surfaces of immune and inflammatory cells. To study these interactions, we previously established expression of human IgA1 in insect cells using recombinant baculoviruses and showed that the expressed antibody is a structurally and functionally intact polypeptide useful for examining the molecular properties of IgA. Indeed, since the C alpha 2 N-linked glycosylation site lies near the Fab-distal pole of C alpha 2, the inability of a mutant IgA1 lacking C alpha 2 N-glycosylation to bind its cognate receptor suggested that the monocyte Fc alpha receptor (mFcalphaR) recognizes IgA at a hinge-distal site encompassing the boundary between the C alpha 2 and C alpha 3 domains. In this report, we utilize both domain-swapped IgA/IgG and point-mutated IgA chimeras to verify the above hypothesis. Using an antigen-specific rosetting assay and a mFc alpha R-expressing cell line, we show that (a) C alpha 2 and C alpha 3 together are necessary and sufficient for binding; (b) neither the IgA hinge nor the tailpiece is necessary for binding; (c) mutations away from the interdomain boundary do not affect binding; and (d) mutations located near the three-dimensional boundary between C alpha 2 and C alpha 3 completely disrupt binding. Taken together, these results localize the mFc alpha R recognition site on IgA to the boundary region between the second and third constant domains--a site analogous to that recognized by Staphylococcus aureus protein A on IgG. The use of this hinge-distal site is, to date, unique among Fc receptors of the Ig superfamily.
机译:免疫球蛋白(Ig)A作为所有黏膜表面的体液防御的第一线,并存在于大量血液中。 IgA在体液免疫中发挥作用,与血清以及免疫和炎性细胞表面上存在的多种效应分子发生相互作用。为了研究这些相互作用,我们先前使用重组杆状病毒建立了人IgA1在昆虫细胞中的表达,并表明表达的抗体是结构和功能上完整的多肽,可用于检查IgA的分子特性。确实,由于C alpha 2 N连接的糖基化位点位于C alpha 2的Fab远端附近,因此缺乏C alpha 2 N糖基化的突变型IgA1无法结合其同源受体,表明单核细胞Fc alpha受体( mFcalphaR)在包含C alpha 2和C alpha 3域之间边界的铰链远端识别IgA。在本报告中,我们利用域交换的IgA / IgG和点突变的IgA嵌合体来验证上述假设。使用抗原特异性玫瑰花样测定法和表达mFc alpha R的细胞系,我们显示(a)C alpha 2和C alpha 3在一起对于结合是必要且充分的; (b)绑定不需要IgA铰链或尾管; (c)离开域间边界的突变不影响结合; (d)位于C alpha 2和C alpha 3之间的三维边界附近的突变完全破坏了结合。综上所述,这些结果将IgA上的mFc alpha R识别位点定位在第二和第三恒定域之间的边界区域,该位置类似于金黄色葡萄球菌蛋白A在IgG上识别的位置。迄今为止,该铰链远端位点的使用在Ig超家族的Fc受体中是唯一的。

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