Department of Cancer Biology, Medical Oncology, Urology, Kimmel Cancer Center, Thomas Jefferson University, Philadelphia, PA 19107, USA.
Am J Pathol. 2010 Apr;176(4):1959-72. doi: 10.2353/ajpath.2010.090653. Epub 2010 Feb 18.
Identification of the molecular changes that promote viability and metastatic behavior of prostate cancer is critical for the development of improved therapeutic interventions. Stat5a/b and Stat3 are both constitutively active in locally-confined and advanced prostate cancer, and both transcription factors have been reported to be critical for the viability of prostate cancer cells. We recently showed that Stat3 promotes metastatic behavior of human prostate cancer cells not only in vitro but also in an in vivo experimental metastases model. In this work, we compare side-by-side Stat5a/b versus Stat3 in the promotion of prostate cancer cell viability, tumor growth, and induction of metastatic colonization in vivo. Inhibition of Stat5a/b induced massive death of prostate cancer cells in culture and reduced both subcutaneous and orthotopic prostate tumor growth, whereas Stat3 had a predominant role over Stat5a/b in promoting metastases formation of prostate cancer cells in vivo in nude mice. The molecular mechanisms underlying the differential biological effects induced by these two transcription factors involve largely different sets of genes regulated by Stat5a/b versus Stat3 in human prostate cancer model systems. Of the two Stat5 homologs, Stat5b was more important for supporting growth of prostate cancer cells than Stat5a. This work provides the first mechanistic comparison of the biological effects induced by transcription factors Stat5a/b versus Stat3 in prostate cancer.
鉴定促进前列腺癌存活能力和转移行为的分子变化对于开发改进的治疗干预措施至关重要。Stat5a/b 和 Stat3 在局部受限和晚期前列腺癌中均持续活跃,并且据报道这两个转录因子对于前列腺癌细胞的存活能力至关重要。我们最近表明,Stat3 不仅在体外而且在体内实验转移模型中促进人类前列腺癌细胞的转移行为。在这项工作中,我们比较了 Stat5a/b 与 Stat3 在促进前列腺癌细胞存活能力、肿瘤生长和体内诱导转移定植方面的作用。Stat5a/b 的抑制诱导前列腺癌细胞在培养中大量死亡,并减少皮下和原位前列腺肿瘤的生长,而 Stat3 在体内促进裸鼠中前列腺癌细胞转移形成方面比 Stat5a/b 具有更大的作用。这两种转录因子诱导的不同生物学效应的分子机制涉及到受 Stat5a/b 与 Stat3 调节的基因在人类前列腺癌模型系统中存在很大差异。在这两个 Stat5 同源物中,Stat5b 比 Stat5a 更重要,有助于支持前列腺癌细胞的生长。这项工作首次对转录因子 Stat5a/b 与 Stat3 在前列腺癌中诱导的生物学效应进行了机制比较。