Department of Immunology, Medical Research Institute, Tokyo Medical and Dental University, Tokyo, Japan.
Faculty of Applied Biological Sciences, Gifu University, Gifu, Japan.
J Immunol. 2021 Jun 1;206(11):2544-2551. doi: 10.4049/jimmunol.2100109. Epub 2021 May 14.
CD22 is an inhibitory B cell coreceptor that regulates B cell development and activation by downregulating BCR signaling through activation of SH2-containing protein tyrosine phosphatase-1 (SHP-1). CD22 recognizes α2,6 sialic acid as a specific ligand and interacts with α2,6 sialic acid-containing membrane molecules, such as CD45, IgM, and CD22, expressed on the same cell. Functional regulation of CD22 by these endogenous ligands enhances BCR ligation-induced signaling and is essential for normal B cell responses to Ags. In this study, we demonstrate that CD45 plays a crucial role in CD22-mediated inhibition of BCR ligation-induced signaling. However, disruption of ligand binding of CD22 enhances CD22 phosphorylation, a process required for CD22-mediated signal inhibition, upon BCR ligation in CD45 as well as wild-type mouse B cells but not in mouse B cells expressing a loss-of-function mutant of SHP-1. This result indicates that SHP-1 but not CD45 is required for ligand-mediated regulation of CD22. We further demonstrate that CD22 is a substrate of SHP-1, suggesting that SHP-1 recruited to CD22 dephosphorylates nearby CD22 as well as other substrates. CD22 dephosphorylation by SHP-1 appears to be augmented by homotypic CD22 clustering mediated by recognition of CD22 as a ligand of CD22 because CD22 clustering increases the number of nearby CD22. Our results suggest that CD22 but not CD45 is an endogenous ligand of CD22 that enhances BCR ligation-induced signaling through SHP-1-mediated dephosphorylation of CD22 in CD22 clusters.
CD22 是一种抑制性 B 细胞共受体,通过激活含 SH2 的蛋白酪氨酸磷酸酶-1(SHP-1)来下调 BCR 信号,从而调节 B 细胞的发育和激活。CD22 识别 α2,6 唾液酸作为特定配体,并与表达在同一细胞上的 α2,6 唾液酸含膜分子,如 CD45、IgM 和 CD22 相互作用。这些内源性配体对 CD22 的功能调节增强了 BCR 结合诱导的信号转导,对于正常 B 细胞对抗原的反应是必不可少的。在这项研究中,我们证明 CD45 在 CD22 介导的抑制 BCR 结合诱导的信号转导中起着至关重要的作用。然而,在 CD45 和野生型小鼠 B 细胞中,配体结合的 CD22 的破坏增强了 CD22 磷酸化,这是 CD22 介导的信号抑制所必需的过程,但在表达 SHP-1 功能丧失突变体的小鼠 B 细胞中则不然。这一结果表明,SHP-1 而不是 CD45 是配体调节 CD22 所必需的。我们进一步证明 CD22 是 SHP-1 的底物,表明募集到 CD22 的 SHP-1 去磷酸化 CD22 及其附近的其他底物。SHP-1 对 CD22 的去磷酸化似乎通过 CD22 同源聚集介导的 CD22 识别增强,因为 CD22 聚集增加了附近 CD22 的数量。我们的结果表明,CD22 而不是 CD45 是 CD22 的内源性配体,通过 SHP-1 介导的 CD22 簇中 CD22 的去磷酸化增强 BCR 结合诱导的信号。