Darnowski James W, Goulette Frederick A, Guan Ying-jie, Chatterjee Devasis, Yang Zhong-Fa, Cousens Leslie P, Chin Y Eugene
Department of Medicine, Division of Medical Oncology, Brown University and Rhode Island Hospital, 593 Eddy Street, Providence, RI 02903, USA.
J Biol Chem. 2006 Jun 30;281(26):17707-17. doi: 10.1074/jbc.M600088200. Epub 2006 Apr 24.
Stat3 and its isoforms belong to a family of cytoplasmic transcription factors that affect the synthesis of various proteins. Caspases are cysteinyl-aspartate proteases that function under apoptotic and non-apoptotic conditions. We now report that, in addition to transcriptional splicing, Stat3 fragmentation can be mediated by caspases. Caspase activation in DU145 cells was achieved by staurosporine (STS) exposure, and Western analysis revealed a reduction in full-length Stat3 (fl-Stat3) expression that was caspase-mediated. This proteolytic relationship was further studied by exposing purified Stat3 protein to a mixture of active caspases under cell-free conditions. This demonstrated that caspases directly cleaved Stat3 and Stat3 cleavage was accompanied by the apparent formation of cleavage fragment(s). Stat3 cleavage fragments, reflecting multiple caspase cleavage sites, also were observed in vitro following STS exposure in DU145 cells and in HEK293T cells transfected to express Stat3 truncation mutants. The impact of cleavage on Stat3 transcriptional activity next was assessed and revealed that cleavage of fl-Stat3 was accompanied by reductions in Stat3-DNA binding, Stat3-driven reporter protein (luciferase) activity, and the expression of selected Stat3-dependent genes. Further, reduced Stat3 expression correlated with increased sensitivity to apoptotic stimuli. In concomitant experiments, reporter activity was assessed in Stat3 truncation mutant-expressing HEK293T cells and revealed that, under non-apoptotic conditions, expression of different Stat3 fragments induced differential effects on Stat3-driven luciferase activity. These findings demonstrate that fl-Stat3 undergoes proteolytic processing by caspases that reduces its expression and leads to the formation of cleavage fragments that may modulate Stat3 transcriptional activity.
Stat3及其异构体属于影响多种蛋白质合成的细胞质转录因子家族。半胱天冬酶是在凋亡和非凋亡条件下起作用的半胱氨酸天冬氨酸蛋白酶。我们现在报告,除了转录剪接外,Stat3的片段化还可由半胱天冬酶介导。通过暴露于星形孢菌素(STS)实现DU145细胞中的半胱天冬酶激活,蛋白质印迹分析显示全长Stat3(fl-Stat3)表达降低,这是由半胱天冬酶介导的。通过在无细胞条件下将纯化的Stat3蛋白暴露于活性半胱天冬酶混合物中,进一步研究了这种蛋白水解关系。这表明半胱天冬酶直接切割Stat3,并且Stat3切割伴随着切割片段的明显形成。在DU145细胞中暴露于STS后以及在转染以表达Stat3截短突变体的HEK293T细胞中,体外也观察到反映多个半胱天冬酶切割位点的Stat3切割片段。接下来评估切割对Stat3转录活性的影响,结果显示fl-Stat3的切割伴随着Stat3与DNA结合的减少、Stat3驱动的报告蛋白(荧光素酶)活性的降低以及所选Stat3依赖性基因的表达减少。此外,Stat3表达降低与对凋亡刺激的敏感性增加相关。在同时进行的实验中,在表达Stat3截短突变体的HEK293T细胞中评估报告基因活性,结果显示,在非凋亡条件下,不同Stat3片段的表达对Stat3驱动的荧光素酶活性产生不同影响。这些发现表明,fl-Stat3经历半胱天冬酶介导的蛋白水解过程,这会降低其表达并导致可能调节Stat3转录活性的切割片段的形成。