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细胞表面唾液酸不影响原发性CD22与CD45和表面IgM的相互作用,也不影响组成型CD22内吞作用的速率。

Cell surface sialic acids do not affect primary CD22 interactions with CD45 and surface IgM nor the rate of constitutive CD22 endocytosis.

作者信息

Zhang Mai, Varki Ajit

机构信息

Glycobiology Research and Training Center, Departments of Medicine and Cellular and Molecular Medicine, School of Medicine, University of California, San Diego, La Jolla, CA 92093-0687, USA.

出版信息

Glycobiology. 2004 Nov;14(11):939-49. doi: 10.1093/glycob/cwh126. Epub 2004 Jul 7.

Abstract

CD22/Siglec-2 is a B cell-specific molecule modulating surface IgM (sIgM) signaling via cytosolic tyrosine-based motifs. CD22 recognizes alpha2-6-linked sialic acids (Sias) via an amino-terminal Ig-like domain. This Sia-binding site is typically masked by unknown sialylated ligands on the same cell surface, an interaction required for optimal signaling function. We studied the effect of cell surface Sias on specific interactions of CD22 with other molecules and on its turnover via endocytosis. A novel approach for simultaneous biotinylation and cross-linking showed that CD22 associates with CD45 and sIgM at much higher levels than reported in prior studies, possibly involving cell surface multimers of CD22. Sia removal or mutation of a CD22 arginine residue required for Sia recognition did not affect these associations even in human:mouse heterologous systems, indicating that they are primarily determined by evolutionarily conserved protein-protein interactions. Thus masking of the Sia-binding site of CD22 involves many cell surface sialoglycoproteins, without requiring specific ligand(s) and/or is mediated by secondary interactions with Sias on CD45 and sIgM. Abrogating Sia interactions also does not affect constitutive CD22 endocytosis. Sia removal does enhance the much faster rate of anti-CD22 antibody-triggered endocytosis, as well as killing by an anti-CD22 immunotoxin. In contrast to the unstimulated state, sIgM cross-linking inhibits both antibody-induced endocytosis and immunotoxin killing. Thus the signal- modulating activity of CD22 Sia recognition cannot be explained by mediation of primary interactions with specific molecules, nor by effects on constitutive endocytosis. The effects on antibody-mediated endocytosis could be of relevance to immunotoxin treatment of lymphomas.

摘要

CD22/Siglec-2是一种B细胞特异性分子,通过基于酪氨酸的胞质基序调节表面IgM(sIgM)信号传导。CD22通过氨基末端免疫球蛋白样结构域识别α2-6连接的唾液酸(Sias)。这个唾液酸结合位点通常被同一细胞表面未知的唾液酸化配体所掩盖,这种相互作用是最佳信号功能所必需的。我们研究了细胞表面唾液酸对CD22与其他分子的特异性相互作用及其通过内吞作用的周转的影响。一种同时进行生物素化和交联的新方法表明,CD22与CD45和sIgM的结合水平比先前研究报道的要高得多,可能涉及CD22的细胞表面多聚体。即使在人鼠异源系统中,去除唾液酸或突变CD22识别所需的精氨酸残基也不会影响这些结合,这表明它们主要由进化上保守的蛋白质-蛋白质相互作用决定。因此,CD22唾液酸结合位点的掩盖涉及许多细胞表面唾液糖蛋白,不需要特定配体,和/或由与CD45和sIgM上的唾液酸的二级相互作用介导。消除唾液酸相互作用也不会影响组成型CD22内吞作用。去除唾液酸确实会加快抗CD22抗体触发的内吞作用速度,以及抗CD22免疫毒素的杀伤作用。与未刺激状态相反,sIgM交联会抑制抗体诱导的内吞作用和免疫毒素杀伤。因此,CD22唾液酸识别的信号调节活性既不能通过与特定分子的主要相互作用的介导来解释,也不能通过对组成型内吞作用的影响来解释。对抗体介导的内吞作用的影响可能与淋巴瘤的免疫毒素治疗有关。

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