Hermiston Michelle L, Tan Allison L, Gupta Vikas A, Majeti Ravindra, Weiss Arthur
Department of Pediatrics, University of California, San Francisco, San Francisco, California 94143, USA.
Immunity. 2005 Dec;23(6):635-47. doi: 10.1016/j.immuni.2005.11.001.
CD45 is a receptor-like protein tyrosine phosphatase highly expressed on all nucleated hematopoietic cells. We previously generated mice containing a point mutation in the juxtamembrane wedge of CD45. Demonstrating the critical negative regulatory function of the wedge, the CD45 E613R mutation led to a lymphoproliferative disorder (LPD) and a lupus-like autoimmune syndrome. Here we show the central role of B cells in this phenotype. Genetic elimination of B cells, but not T cells, ablates the LPD. In contrast to CD45-deficient B cells, the E613R mutation generates hyperresponsive B cells. Comparison of CD45-deficient and CD45 E613R mice reveals dichotomous effects of these mutations on B cell development. Together, the results support a role for CD45 as a rheostat, with both positive and negative regulatory functions, that fine-tunes the signal transduction threshold at multiple checkpoints in B cell development.
CD45是一种在所有有核造血细胞上高度表达的受体样蛋白酪氨酸磷酸酶。我们之前培育出了在CD45近膜楔形区含有一个点突变的小鼠。CD45 E613R突变证明了楔形区的关键负调控功能,导致了淋巴细胞增生性疾病(LPD)和狼疮样自身免疫综合征。在此我们展示了B细胞在该表型中的核心作用。对B细胞而非T细胞进行基因剔除可消除LPD。与CD45缺陷型B细胞相反,E613R突变产生反应性过高的B细胞。对CD45缺陷型和CD45 E613R小鼠的比较揭示了这些突变对B细胞发育的二分效应。总之,这些结果支持CD45作为一种变阻器的作用,具有正负调控功能,可在B细胞发育的多个检查点微调信号转导阈值。