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有证据表明,BimEL的Ser87被Akt磷酸化并调节BimEL的凋亡功能。

Evidence that Ser87 of BimEL is phosphorylated by Akt and regulates BimEL apoptotic function.

作者信息

Qi Xiao-Jun, Wildey Gary M, Howe Philip H

机构信息

Department of Cell Biology, Cleveland Clinic Lerner College of Medicine, Cleveland Clinic Foundation, OH 44195, USA.

出版信息

J Biol Chem. 2006 Jan 13;281(2):813-23. doi: 10.1074/jbc.M505546200. Epub 2005 Nov 10.

Abstract

Bim, the Bcl-2 interacting mediator of cell death, is a member of the BH3-only family of pro-apoptotic proteins. Recent studies have demonstrated that the apoptotic activity of Bim can be regulated through a post-translational mechanism whereby ERK phosphorylation serves as a signal for Bim ubiquitination and proteasomal degradation. In this report, we investigated the signaling pathways leading to Bim phosphorylation in Ba/F3 cells, an interleukin-3 (IL-3)-dependent B-cell line. IL-3 stimulation induced phosphorylation of Bim(EL), one of the predominant isoforms of Bim expressed in cells, at multiple sites, as evidenced by the formation of at least three to four bands by Western blotting that were sensitive to phosphatase digestion. The appearance of multiple, phosphorylated species of Bim(EL) correlated with Akt, and not ERK, activation. The PI3K inhibitor, LY294002, blocked IL-3-stimulated Akt activity and partially blocked Bim(EL) phosphorylation. In vitro kinase assays showed that recombinant Akt could directly phosphorylate a GST-Bim(EL) fusion protein and identified the Akt phosphorylation site in the Bim(EL) domain as Ser(87). Further, we demonstrated that cytokine stimulation promotes Bim(EL) binding to 14-3-3 proteins. Finally, we show that mutation of Ser(87) dramatically increases the apoptotic potency of Bim(EL). We propose that Ser(87) of Bim(EL) is an important regulatory site that is targeted by Akt to attenuate the pro-apoptotic function of Bim(EL), thereby promoting cell survival.

摘要

Bim,即细胞死亡的Bcl-2相互作用介质,是仅含BH3结构域的促凋亡蛋白家族成员。最近的研究表明,Bim的凋亡活性可通过翻译后机制进行调节,其中ERK磷酸化作为Bim泛素化和蛋白酶体降解的信号。在本报告中,我们研究了导致Ba/F3细胞(一种依赖白细胞介素-3(IL-3)的B细胞系)中Bim磷酸化的信号通路。IL-3刺激诱导了细胞中表达的Bim主要异构体之一Bim(EL)在多个位点的磷酸化,蛋白质印迹法显示至少形成三到四条对磷酸酶消化敏感的条带,证明了这一点。Bim(EL)多种磷酸化形式的出现与Akt而非ERK的激活相关。PI3K抑制剂LY294002可阻断IL-3刺激的Akt活性,并部分阻断Bim(EL)的磷酸化。体外激酶分析表明,重组Akt可直接磷酸化GST-Bim(EL)融合蛋白,并确定Bim(EL)结构域中的Akt磷酸化位点为Ser(87)。此外,我们证明细胞因子刺激可促进Bim(EL)与14-3-3蛋白结合。最后,我们表明Ser(87)突变显著增加了Bim(EL)的凋亡效力。我们提出,Bim(EL)的Ser(87)是一个重要的调节位点,Akt靶向该位点以减弱Bim(EL)的促凋亡功能,从而促进细胞存活。

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