Fujiwara Naruyoshi, Fusaki Noemi, Hozumi Nobumichi
Research Institute for Biological Sciences, Tokyo University of Science, Japan.
Microbiol Immunol. 2004;48(1):59-66. doi: 10.1111/j.1348-0421.2004.tb03488.x.
Engagement of mIgM induces G1 arrest and apoptosis in immature B cells. The biochemical mechanism(s) regulating the cell death process are poorly understood. Cross-linking of CD72 (a B cell co-receptor) with anti-CD72 antibody was shown to protect B cells from apoptosis. We investigated the molecular mechanism involved in apoptosis preventing signaling mediated by CD72 ligation using a derivative (WEHIdelta) of the WEHI231 cell line which is representative of immature B cells. Apoptotic WEHIdelta cells following cross-linking of mIgM demonstrate a dramatic loss of c-Myc protein after transient up-regulation. In contrast, pre-ligation of CD72 was able to sustain c-Myc expression after transient up-regulation. Cross-linking of mIgM of WEHIdelta cells causes accumulation of the Cdk inhibitor, p27(Kip1). CD72 pre-ligation was shown to inhibit the accumulation of p27(Kip1) protein. Moreover, NF-kappaB activity was not suppressed in WEHIdelta cells after mIgM cross-linking when the cells were pre-treated with anti-CD72 antibody. These results strongly suggest that the apoptosis preventing signal evoked by CD72 ligation is delivered through the pathway of NF-kappaB, c-Myc, p27(Kip1) and cyclin.
mIgM的激活可诱导未成熟B细胞发生G1期阻滞和凋亡。目前对调节细胞死亡过程的生化机制了解甚少。研究表明,用抗CD72抗体交联CD72(一种B细胞共受体)可保护B细胞免于凋亡。我们使用代表未成熟B细胞的WEHI231细胞系的衍生物(WEHIdelta),研究了CD72连接介导的凋亡预防信号传导所涉及的分子机制。mIgM交联后发生凋亡的WEHIdelta细胞在短暂上调后显示c-Myc蛋白显著丧失。相反,CD72的预连接能够在短暂上调后维持c-Myc表达。WEHIdelta细胞的mIgM交联导致细胞周期蛋白依赖性激酶抑制剂p27(Kip1)积累。CD72预连接可抑制p27(Kip1)蛋白的积累。此外,当用抗CD72抗体预处理细胞后,mIgM交联后的WEHIdelta细胞中NF-κB活性未被抑制。这些结果强烈表明,CD72连接引发的凋亡预防信号是通过NF-κB、c-Myc、p27(Kip1)和细胞周期蛋白途径传递的。