Ligr Martin, Wu Xinyu, Daniels Garrett, Zhang David, Wang Huamin, Hajdu Cristina, Wang Jinhua, Pan Ruimin, Pei Zhiheng, Zhang Lanjing, Melis Marcovalerio, Pincus Matthew R, Saunders John K, Lee Peng, Xu Ruliang
Department of Pathology, New York University Langone Medical Center New York, NY, USA.
Department of Pathology, Mount Sinai School of Medicine New York, NY, USA.
Am J Cancer Res. 2014 May 26;4(3):196-210. eCollection 2014.
Transcriptional intermediary factor 1 gamma (Tif1γ) (Ectodermin/PTC7/RFG7/TRIM33) is a transcriptional cofactor with an important role in the regulation of the TGFβ pathway. It has been suggested that it competes with Smad2/Smad3 for binding to Smad4, or alternatively that it may target Smad4 for degradation, although its role in carcinogenesis is unclear. In this study, we showed that Tif1γ interacts with Smad1/Smad4 complex in vivo, using both yeast two-hybrid and coimmunoprecipitation assays. We demonstrated that Tif1γ inhibits transcriptional activity of the Smad1/Smad4 complex through its PHD domain or bromo-domainin pancreatic cells by luciferase assay. Additionally, there is a dynamic inverse relationship between the levels of Tif1γ and Smad4 in benign and malignant pancreatic cell lines. Overexpression of Tif1γ resulted in decreased level of Smad4. Both overexpression and knockdown of Tif1γ resulted in growth inhibition in both benign and cancerous pancreatic cell lines, attributable to a G2-phase cell cycle arrest, but only knockdown of Tif1γ reduces tumor cell invasiveness in vitro. Our study demonstrated that imbalanced expression of Tif1γ results in inhibition of pancreatic ductal epithelial cell growth. In addition, knockdown of Tif1γ may inhibit tumor invasion. These data suggest that Tif1γ might serve as a potential therapeutic target for pancreatic cancer.
转录中介因子1γ(Tif1γ)(外胚层决定蛋白/ PTC7 / RFG7 / TRIM33)是一种转录辅因子,在TGFβ信号通路的调控中起重要作用。有研究表明,它与Smad2 / Smad3竞争结合Smad4,或者它可能靶向Smad4进行降解,尽管其在致癌作用中的角色尚不清楚。在本研究中,我们通过酵母双杂交和免疫共沉淀实验表明,Tif1γ在体内与Smad1 / Smad4复合物相互作用。通过荧光素酶检测,我们证明Tif1γ在胰腺细胞中通过其PHD结构域或溴结构域抑制Smad1 / Smad4复合物的转录活性。此外,在良性和恶性胰腺细胞系中,Tif1γ和Smad4的水平之间存在动态反比关系。Tif1γ的过表达导致Smad4水平降低。Tif1γ的过表达和敲低均导致良性和癌性胰腺细胞系的生长抑制,这归因于G2期细胞周期停滞,但只有Tif1γ的敲低降低了体外肿瘤细胞的侵袭性。我们的研究表明,Tif1γ表达失衡导致胰腺导管上皮细胞生长受到抑制。此外,Tif1γ的敲低可能抑制肿瘤侵袭。这些数据表明,Tif1γ可能是胰腺癌的潜在治疗靶点。