Herrmann Andreas, Vogt Michael, Mönnigmann Martin, Clahsen Thomas, Sommer Ulrike, Haan Serge, Poli Valeria, Heinrich Peter C, Müller-Newen Gerhard
Institut für Biochemie, Universitätsklinikum RWTH Aachen, Pauwelsstrasse 30, 52074 Aachen, Germany.
J Cell Sci. 2007 Sep 15;120(Pt 18):3249-61. doi: 10.1242/jcs.03482. Epub 2007 Aug 28.
Persistent activation of the transcription factor STAT3 has been detected in many types of cancer and plays an important role in tumor progression, immune evasion and metastasis. To analyze persistent STAT3 activation we coexpressed STAT3 with v-Src. We found that tyrosine phosphorylation of STAT3 by v-Src is independent of Janus kinases (Jaks), the canonical activators of STATs. The STAT3-induced feedback inhibitor, suppressor of cytokine signaling 3 (SOCS3), did not interfere with STAT3 activation by v-Src. However, the protein inhibitor of activated STAT3 (PIAS3) suppressed gene induction by persistently activated STAT3. We measured nucleocytoplasmic shuttling of STAT3 in single cells by bleaching the YFP moiety of double-labelled STAT3-CFP-YFP in the cytoplasm. Analysis of the subcellular distribution of CFP and YFP fluorescence over time by mathematical modeling and computational parameter estimation revealed that activated STAT3 shuttles more rapidly than non-activated STAT3. Inhibition of exportin-1-mediated nuclear export slowed down nucleocytoplasmic shuttling of v-Src-activated STAT3 resulting in reduced tyrosine phosphorylation, decreased induction of STAT3 target genes and increased apoptosis. We propose passage of persistently activated STAT3 through the nuclear pore complex as a new target for intervention in cancer.
转录因子STAT3的持续激活已在多种癌症中被检测到,并在肿瘤进展、免疫逃逸和转移中发挥重要作用。为了分析STAT3的持续激活,我们将STAT3与v-Src共表达。我们发现v-Src介导的STAT3酪氨酸磷酸化不依赖于Janus激酶(Jaks),即STATs的经典激活因子。STAT3诱导的反馈抑制剂细胞因子信号转导抑制因子3(SOCS3)并不干扰v-Src对STAT3的激活。然而,活化STAT3的蛋白抑制剂(PIAS3)抑制了持续活化的STAT3的基因诱导。我们通过漂白细胞质中双标记的STAT3-CFP-YFP的YFP部分来测量单细胞中STAT3的核质穿梭。通过数学建模和计算参数估计分析CFP和YFP荧光随时间的亚细胞分布,结果显示活化的STAT3比未活化的STAT3穿梭速度更快。抑制输出蛋白-1介导的核输出减缓了v-Src激活的STAT3的核质穿梭,导致酪氨酸磷酸化减少、STAT3靶基因诱导降低以及细胞凋亡增加。我们提出持续活化的STAT3通过核孔复合体是癌症干预的一个新靶点。