Rao T D, Maghazachi A A, González A V, Phillips-Quagliata J M
Department of Pathology, New York University Medical Center, NY 10016.
J Immunol. 1992 Jul 1;149(1):143-53.
The specificity and properties of a novel IgA receptor expressed on the surface of a tissue culture-adapted B cell lymphoma, T560, that originated in murine gut-associated lymphoid tissue, have been explored. Like the IgA receptors of murine T and splenic B cells studied by others, the T560 IgA receptor is trypsin sensitive and neuraminidase resistant and is up-regulated on T560 cells by exposing them overnight to high concentrations of polymeric IgA. Unlike them, the T560 IgA receptor is inhibited by low concentrations of IgM and high concentrations of IgG2a and IgG2b, binds at pH 4.0 but not at pH 8.0, is down-regulated by activation of protein kinase C and is sensitive to phosphatidylinositol-specific phospholipase C, indicating that it is glycosyl phosphatidylinositol-linked to the cell membrane. It is not a cell-bound form of galactosyl transferase, does not appear to bind to Ig through carbohydrate residues and does not react specifically with antibody to secretory component. It may be a completely new, cross-reactive receptor, perhaps related in some way to the polymeric Ig receptor or to the receptor for IgA expressed on the apical surface of Peyer's patch M cells, which is known to cross-react with IgG. Alternatively, it may be homologous to the highly IgA-specific Fc alpha R of T cells but, perhaps because of its glycosyl phosphatidylinositol linker, may have an ability to move and interact with other Ig receptors on the cell surface such that Ig bound to them are cross-inhibitory.
对一种源自小鼠肠道相关淋巴组织的、经组织培养适应的B细胞淋巴瘤T560表面表达的新型IgA受体的特异性和特性进行了研究。与其他研究的小鼠T细胞和脾B细胞的IgA受体一样,T560 IgA受体对胰蛋白酶敏感,对神经氨酸酶有抗性,并且通过将T560细胞暴露于高浓度的聚合IgA过夜,该受体在T560细胞上上调。与它们不同的是,T560 IgA受体受到低浓度IgM以及高浓度IgG2a和IgG2b的抑制,在pH 4.0时结合而在pH 8.0时不结合,通过蛋白激酶C的激活而下调,并且对磷脂酰肌醇特异性磷脂酶C敏感,表明它通过糖基磷脂酰肌醇与细胞膜相连。它不是半乳糖基转移酶的细胞结合形式,似乎不通过碳水化合物残基与Ig结合,也不与分泌成分抗体发生特异性反应。它可能是一种全新的交叉反应性受体,也许在某种程度上与聚合Ig受体或派尔集合淋巴结M细胞顶端表面表达的IgA受体相关,已知后者与IgG发生交叉反应。或者,它可能与T细胞高度IgA特异性的FcαR同源,但也许由于其糖基磷脂酰肌醇连接子,可能具有在细胞表面移动并与其他Ig受体相互作用的能力,使得与之结合的Ig具有交叉抑制作用。