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细胞外调节激酶-丝裂原活化蛋白激酶在B细胞抗原受体诱导的凋亡及CD40介导的对WEHI-231未成熟B细胞的拯救中的不同作用

Differential roles for extracellularly regulated kinase-mitogen-activated protein kinase in B cell antigen receptor-induced apoptosis and CD40-mediated rescue of WEHI-231 immature B cells.

作者信息

Gauld Stephen B, Blair Derek, Moss Catriona A, Reid Steven D, Harnett Margaret M

机构信息

Department of Immunology and Bacteriology, University of Glasgow, Glasgow, United Kingdom.

出版信息

J Immunol. 2002 Apr 15;168(8):3855-64. doi: 10.4049/jimmunol.168.8.3855.

Abstract

One of the major unresolved questions in B cell biology is how the B cell Ag receptor (BCR) differentially signals to transduce anergy, apoptosis, proliferation, or differentiation during B cell maturation. We now report that extracellularly regulated kinase-mitogen-activated protein kinase (Erk-MAP kinase) can play dual roles in the regulation of the cell fate of the immature B cell lymphoma, WEHI-231, depending on the kinetics and context of Erk-MAP kinase activation. First, we show that the BCR couples to an early (< or =2 h) Erk-MAP kinase signal which activates a phospholipase A(2) pathway that we have previously shown to mediate collapse of mitochondrial membrane potential, resulting in depletion of cellular ATP and cathepsin B execution of apoptosis. Rescue of BCR-driven apoptosis by CD40 signaling desensitizes such early extracellularly regulated kinase (Erk) signaling and hence uncouples the BCR from the apoptotic mitochondrial phospholipase A(2) pathway. A second role for Erk-MAP kinase in promoting the growth and proliferation of WEHI-231 immature B cells is evidenced by data showing that proliferating and CD40-stimulated WEHI-231 B cells exhibit a sustained cycling pattern (8-48 h) of Erk activation that correlates with cell growth and proliferation. This growth-promoting role for Erk signaling is supported by three key pieces of evidence: 1) signaling via the BCR, under conditions that induce growth arrest, completely abrogates sustained Erk activation; 2) CD40-mediated rescue from growth arrest correlates with restoration of cycling Erk activation; and 3) sustained inhibition of Erk prevents CD40-mediated rescue of BCR-driven growth arrest of WEHI-231 immature B cells. Erk-MAP kinase can therefore induce diverse biological responses in WEHI-231 cells depending on the context and kinetics of activation.

摘要

B细胞生物学中尚未解决的主要问题之一是,在B细胞成熟过程中,B细胞抗原受体(BCR)如何通过不同的信号转导来诱导无反应性、凋亡、增殖或分化。我们现在报告,细胞外调节激酶-丝裂原活化蛋白激酶(Erk-MAP激酶)在未成熟B细胞淋巴瘤WEHI-231的细胞命运调控中可发挥双重作用,这取决于Erk-MAP激酶激活的动力学和背景。首先,我们表明BCR与早期(≤2小时)的Erk-MAP激酶信号偶联,该信号激活了一条磷脂酶A2途径,我们之前已证明该途径介导线粒体膜电位的崩溃,导致细胞ATP耗竭和组织蛋白酶B执行凋亡。CD40信号传导对BCR驱动的凋亡的挽救使这种早期细胞外调节激酶(Erk)信号脱敏,从而使BCR与凋亡性线粒体磷脂酶A2途径解偶联。Erk-MAP激酶在促进WEHI-231未成熟B细胞生长和增殖方面的第二个作用由以下数据证明:增殖的和CD40刺激的WEHI-231 B细胞表现出与细胞生长和增殖相关的持续循环模式(8-48小时)的Erk激活。Erk信号传导的这种促生长作用得到三个关键证据的支持:1)在诱导生长停滞的条件下,通过BCR的信号传导完全消除了持续的Erk激活;2)CD40介导的从生长停滞中的挽救与循环Erk激活的恢复相关;3)持续抑制Erk可阻止CD40介导的对WEHI-231未成熟B细胞BCR驱动的生长停滞的挽救。因此,Erk-MAP激酶可根据激活的背景和动力学在WEHI-231细胞中诱导多种生物学反应。

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