Greer S F, Justement L B
Department of Microbiology, Division of Developmental and Clinical Immunology, University of Alabama, Birminghamp55294, USA.
J Immunol. 1999 May 1;162(9):5278-86.
Cross-linking of CD45 induced capping and physical sequestration from CD22 leading to an increase in tyrosine phosphorylation of CD22 and SHP-1 recruitment. Additionally, CD22 isolated from a CD45-deficient B cell line exhibited increased basal/inducible tyrosine phosphorylation and enhanced recruitment of SHP-1 compared with CD22 isolated from CD45-positive parental cells. Subsequent experiments were performed to determine whether enhanced SHP-1 recruitment to CD22 is responsible for attenuation of receptor-mediated Ca2+ responses in CD45-deficient cells. Catalytically inactive SHP-1 expressed in CD45-deficient cells interacted with CD22 and decreased phosphatase activity in CD22 immunoprecipitates to levels that were comparable to those in CD45-positive cells. Expression of catalytically inactive SHP-1 restored intracellular mobilization of Ca2+ in response to MHC class II cross-linking, but did not affect B cell Ag receptor- or class II-mediated Ca2+ influx from the extracellular space. These results indicate that CD45 regulates tyrosine phosphorylation of CD22 and binding of SHP-1. The data further indicate that enhanced recruitment and activation of SHP-1 in CD45-deficient cells affect intracellular mobilization of Ca2+, but are not responsible for abrogation of receptor-mediated Ca2+ influx from the extracellular space.
CD45的交联诱导了帽化并使其与CD22发生物理隔离,导致CD22的酪氨酸磷酸化增加以及SHP-1募集。此外,与从CD45阳性亲代细胞中分离的CD22相比,从CD45缺陷型B细胞系中分离的CD22表现出基础/诱导型酪氨酸磷酸化增加以及SHP-1募集增强。随后进行了实验,以确定增强的SHP-1募集到CD22是否是CD45缺陷型细胞中受体介导的Ca2+反应减弱的原因。在CD45缺陷型细胞中表达的催化失活的SHP-1与CD22相互作用,并将CD22免疫沉淀物中的磷酸酶活性降低到与CD45阳性细胞相当的水平。催化失活的SHP-1的表达恢复了MHC II类交联反应中Ca2+的细胞内动员,但不影响B细胞抗原受体或II类介导的细胞外空间Ca2+内流。这些结果表明,CD45调节CD22的酪氨酸磷酸化和SHP-1的结合。数据进一步表明,CD45缺陷型细胞中SHP-1的募集和激活增强会影响Ca2+的细胞内动员,但不是受体介导的细胞外空间Ca2+内流消除的原因。