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CD45-null transgenic mice reveal a positive regulatory role for CD45 in early thymocyte development, in the selection of CD4+CD8+ thymocytes, and B cell maturation

机译:CD45无基因转基因小鼠在早期胸腺细胞发育,CD4 + CD8 +胸腺细胞选择和B细胞成熟中显示CD45的正调节作用

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摘要

The CD45 transmembrane glycoprotein has been shown to be a protein phosphotyrosine phosphatase and to be important in signal transduction in T and B lymphocytes. We have employed gene targeting to create a strain of transgenic mice that completely lacks expression of all isoforms of CD45. The spleens from CD45-null mice contain approximately twice the number of B cells and one fifth the number of T cells found in normal controls. The increase in B cell numbers is due to the specific expansion of two B cell subpopulations that express high levels of immunoglobulin (IgM) staining. T cell development is significantly inhibited in CD45-null animals at two distinct stages. The efficiency of the development of CD4-CD8- thymocytes into CD4+ CD8+ thymocytes is reduced by twofold, subsequently the frequency of successful maturation of the double positive population into mature, single positive thymocytes is reduced by a further four- to fivefold. In addition, we demonstrate that CD45-null thymocytes are severely impaired in their apoptotic response to cross-linking signals via T cell receptor (TCR) in fetal thymic organ culture. In contrast, apoptosis can be induced normally in CD45-null thymocytes by non-TCR- mediated signals. Since both positive and negative selection require signals through the TCR complex, these findings suggest that CD45 is an important regulator of signal transduction via the TCR complex at multiple stages of T cell development. CD45 is absolutely required for the transmission of mitogenic signals via IgM and IgD. By contrast, CD45-null B cells proliferate as well as wild-type cells to CD40- mediated signals. The proliferation of B cells in response to CD38 cross-linking is significantly reduced but not abolished by the CD45- null mutation. We conclude that CD45 is not required at any stage during the generation of mature peripheral B cells, however its loss reveals a previously unrecognized role for CD45 in the regulation of certain subpopulations of B cells.
机译:已经证明CD45跨膜糖蛋白是蛋白质磷酸酪氨酸磷酸酶,并且在T和B淋巴细胞的信号转导中很重要。我们已经采用基因靶向技术来创建完全缺乏CD45所有同工型表达的转基因小鼠品系。 CD45无效小鼠的脾脏中含有大约两倍于正常对照中发现的B细胞和五分之一的T细胞。 B细胞数量的增加是由于表达高水平免疫球蛋白(IgM)染色的两个B细胞亚群的特异性扩增。在两个不同阶段,CD45无效的动物中T细胞的发育受到显着抑制。 CD4-CD8-胸腺细胞发展成CD4 + CD8 +胸腺细胞的效率降低了两倍,随后,双阳性人群成功成熟为成熟的单阳性胸腺细胞的频率进一步降低了四到五倍。此外,我们证明胎儿胸腺器官培养物中CD45无效的胸腺细胞对通过T细胞受体(TCR)的交联信号的凋亡反应严重受损。相反,可以通过非TCR介导的信号在CD45-无效胸腺细胞中正常诱导凋亡。由于阳性和阴性选择都需要通过TCR复合物的信号,因此这些发现表明CD45是T细胞发育多个阶段通过TCR复合物进行信号转导的重要调节剂。通过IgM和IgD传输有丝分裂信号绝对需要CD45。相比之下,CD45无效的B细胞以及野生型细胞都能增殖CD40介导的信号。响应CD38交联的B细胞增殖显着降低,但并未被CD45-无效突变所消除。我们得出的结论是,在成熟的外周血B细胞生成过程中的任何阶段都不需要CD45,但是它的丢失揭示了CD45在B细胞某些亚群的调节中先前未被认识的作用。

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