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与间变性大细胞淋巴瘤相关的核磷蛋白-间变性淋巴瘤激酶激活磷脂酰肌醇3-激酶/蛋白激酶B抗凋亡信号通路。

Nucleophosmin-anaplastic lymphoma kinase associated with anaplastic large-cell lymphoma activates the phosphatidylinositol 3-kinase/Akt antiapoptotic signaling pathway.

作者信息

Bai R Y, Ouyang T, Miething C, Morris S W, Peschel C, Duyster J

机构信息

Department of Internal Medicine III, Laboratory of Leukemogenesis, Technical University of Munich, Germany.

出版信息

Blood. 2000 Dec 15;96(13):4319-27.

PMID:11110708
Abstract

More than half of anaplastic large-cell lymphomas (ALCLs) have a chromosomal translocation t(2;5) that leads to the expression of a hybrid protein composed of the nucleolar phosphoprotein nucleophosmin (NPM) and the anaplastic lymphoma kinase (ALK) that exhibits an unregulated tyrosine kinase activity. We have previously identified PLC-gamma as a crucial downstream signaling molecule of NPM-ALK that contributes to its mitogenic potential. Here, we show that NPM-ALK recruits the C-terminal SH2 domain of the phosphatidylinositol 3-kinase (PI 3kinase) p85 subunit. PI 3-kinase assays revealed that the kinase is activated by NPM-ALK in vivo, in turn activating PKB/Akt in NPM-ALK-expressing cells. The use of 2 specific PI 3-kinase inhibitors, wortmannin and LY294002, demonstrated the requirement of PI 3-kinase for the growth of NPM-ALK-transformed cell lines, as well as a cell line established from a patient with ALCL. Primary murine bone marrow retrovirally transduced with NPM-ALK showed a transformed phenotype that was reversible on treatment with PI 3-kinase inhibitors. Flow cytometric analysis revealed that wortmannin-treated NPM-ALK-transformed cell lines underwent apoptosis. Furthermore, apoptosis induced by overexpression of the proapoptotic molecule Bad could be partially blocked by the overexpression of NPM-ALK. Thus, NPM-ALK activates the antiapoptotic PI 3-kinase/Akt pathway, which likely contributes to the molecular pathogenesis of ALCL. (Blood. 2000;96:4319-4327)

摘要

超过半数的间变性大细胞淋巴瘤(ALCL)存在染色体易位t(2;5),这导致一种由核仁磷蛋白核磷素(NPM)和间变性淋巴瘤激酶(ALK)组成的融合蛋白表达,该融合蛋白具有不受调控的酪氨酸激酶活性。我们之前已确定磷脂酶C-γ(PLC-γ)是NPM-ALK的关键下游信号分子,它有助于其促有丝分裂潜能。在此,我们表明NPM-ALK招募磷脂酰肌醇3激酶(PI 3激酶)p85亚基的C末端SH2结构域。PI 3激酶分析显示该激酶在体内被NPM-ALK激活,进而在表达NPM-ALK的细胞中激活蛋白激酶B/蛋白激酶B(PKB/Akt)。使用两种特异性PI 3激酶抑制剂渥曼青霉素和LY294002,证明了PI 3激酶对NPM-ALK转化的细胞系以及从一名ALCL患者建立的细胞系生长的必要性。用NPM-ALK进行逆转录病毒转导的原代小鼠骨髓显示出一种转化表型,在用PI 3激酶抑制剂处理后可逆转。流式细胞术分析显示,经渥曼青霉素处理的NPM-ALK转化细胞系发生凋亡。此外,促凋亡分子Bad过表达诱导的凋亡可被NPM-ALK过表达部分阻断。因此,NPM-ALK激活抗凋亡的PI 3激酶/蛋白激酶B途径,这可能有助于ALCL的分子发病机制。(《血液》。2000年;96:4319 - 4327)

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