Gu Ting-Lei, Tothova Zuzana, Scheijen Blanca, Griffin James D, Gilliland D Gary, Sternberg David W
Division of Hematology, Brigham and Women's Hospital/Harvard Medical School, 75 Francis Street, Boston, MA, USA.
Blood. 2004 Jun 15;103(12):4622-9. doi: 10.1182/blood-2003-03-0820. Epub 2004 Feb 12.
Between 30% and 50% of patients with advanced-stage anaplastic large-cell lymphoma (ALCL) harbor the balanced chromosomal rearrangement t(2;5)(p23;q35), which results in the generation of the fusion protein nucleophosmin-anaplastic lymphoma kinase (NPM-ALK). To further study survival signaling by NPMALK, we generated Ba/F3 cell lines with either inducible or constitutive expression of NPM-ALK and examined the regulation of the AKT target FOXO3a. We hypothesized that NPM-ALK signaling through phosphoinositol 3-kinase (PI 3-kinase) and AKT would regulate FOXO3a, a member of the forkhead family of transcription factors, thereby stimulating proliferation and blocking programmed cell death in NPM-ALK-transformed cells. In Ba/F3 cells with induced or constitutive expression of NPM-ALK, concomitant AKT activation and phosphorylation of its substrate, FOXO3a, was observed. In addition, transient expression of NPM-ALK in U-20S cells inhibited FOXO3a-mediated transactivation of reporter gene expression. Furthermore, NPM-ALK-induced FOXO3a phosphorylation in Ba/F3 cells resulted in nuclear exclusion of this transcriptional regulator, up-regulation of cyclin D2 expression, and down-regulation of p27(kip1) and Bim-1 expression. NPMALK reversal of proliferation arrest and of p27(kip1) induction was dependent on the phosphorylation of FOXO3a. Thus, FOXO3a is a barrier to hematopoietic transformation that is overcome by phosphorylation and cytoplasmic relocalization induced by the expression of NPM-ALK.
30%至50%的晚期间变性大细胞淋巴瘤(ALCL)患者存在平衡染色体重排t(2;5)(p23;q35),这导致融合蛋白核磷蛋白-间变性淋巴瘤激酶(NPM-ALK)的产生。为了进一步研究NPM-ALK的生存信号传导,我们构建了可诱导或组成性表达NPM-ALK的Ba/F3细胞系,并检测了AKT靶标FOXO3a的调控情况。我们假设,NPM-ALK通过磷酸肌醇3激酶(PI 3激酶)和AKT发出的信号会调控FOXO3a(一种叉头转录因子家族成员),从而刺激NPM-ALK转化细胞的增殖并阻断程序性细胞死亡。在诱导或组成性表达NPM-ALK的Ba/F3细胞中,观察到了AKT的激活及其底物FOXO3a的磷酸化。此外,NPM-ALK在U-20S细胞中的瞬时表达抑制了FOXO3a介导的报告基因表达的反式激活。此外,NPM-ALK在Ba/F3细胞中诱导的FOXO3a磷酸化导致该转录调节因子被排除在细胞核外,细胞周期蛋白D2表达上调,p27(kip1)和Bim-1表达下调。NPM-ALK对增殖停滞和p27(kip1)诱导的逆转依赖于FOXO3a的磷酸化。因此,FOXO3a是造血细胞转化的一个障碍,而NPM-ALK的表达所诱导的磷酸化和细胞质重新定位克服了这一障碍。