Zanella Fabian, Rosado Aranzazú, García Beatriz, Carnero Amancio, Link Wolfgang
Experimental Therapeutics Program, Centro Nacional de Investigaciones Oncologicas (CNIO), Melchor Fernandez Almagro 3, 28029 Madrid, Spain.
Chembiochem. 2008 Sep 22;9(14):2229-37. doi: 10.1002/cbic.200800255.
FOXO proteins are direct targets of PI3K/Akt signaling and they integrate the signals of several other transduction pathways at the transcriptional level. FOXO transcription factors are involved in normal cell homeostasis and neoplasia, and they are regulated by multiple post-transcriptional modifications. In cancer research, the regulation of the FOXO factors is receiving increasing attention as their activation has been linked to cell-cycle arrest and apoptosis. Hence, FOXO proteins have been proposed to act as tumor suppressors. Here, we applied a chemical biology approach to study the mechanisms that influence the intracellular localization of the FOXO family member FOXO3a. We established a high-throughput cellular-imaging assay that monitors the nuclear-cytoplasmic translocation of a GFP-FOXO3a fusion protein in tumor cells. Nuclear accumulation of fluorescent signals upon treatment with the known PI3K inhibitors LY294002, wortmannin, PIK-75, and PI-103 was dose dependent and agreed well with the IC(50) values reported for PI3Kalpha inhibition in vitro. Additionally, we identified 17 compounds from a panel of 73 low-molecular-weight compounds capable of inducing the nuclear accumulation of GFP-FOXO. These compounds include chemicals known to interfere with components of the PI3K/Akt signaling pathway, as well as with nuclear export and Ca(2+)/calmodulin (CaM)-dependent signaling events. Interestingly, the therapeutic agent vinblastine induced efficient nuclear translocation of the FOXO reporter protein. Our data illustrate the potential of chemical genetics when combined with robust and sensitive high-content-screening technology.
FOXO蛋白是PI3K/Akt信号通路的直接靶点,它们在转录水平整合其他几种转导通路的信号。FOXO转录因子参与正常细胞的稳态和肿瘤形成,并且受到多种转录后修饰的调控。在癌症研究中,FOXO因子的调控受到越来越多的关注,因为它们的激活与细胞周期停滞和细胞凋亡有关。因此,有人提出FOXO蛋白可作为肿瘤抑制因子。在这里,我们应用化学生物学方法来研究影响FOXO家族成员FOXO3a细胞内定位的机制。我们建立了一种高通量细胞成像检测方法,用于监测肿瘤细胞中GFP-FOXO3a融合蛋白的核质转运。用已知的PI3K抑制剂LY294002、渥曼青霉素、PIK-75和PI-103处理后,荧光信号的核积累呈剂量依赖性,并且与体外报道的PI3Kα抑制的IC(50)值非常吻合。此外,我们从一组73种低分子量化合物中鉴定出17种能够诱导GFP-FOXO核积累的化合物。这些化合物包括已知会干扰PI3K/Akt信号通路成分以及核输出和Ca(2+)/钙调蛋白(CaM)依赖性信号事件的化学物质。有趣的是,治疗药物长春碱诱导了FOXO报告蛋白的有效核转位。我们的数据说明了化学遗传学与强大而灵敏的高内涵筛选技术相结合的潜力。