Kuang Chenzhong, Xiao Yan, Liu Xubao, Stringfield Teresa M, Zhang Shaobo, Wang Zhenzhen, Chen Yan
Department of Medical and Molecular Genetics, Indiana University School of Medicine and the Walther Cancer Institute, Indianapolis, IN 46202, USA.
Proc Natl Acad Sci U S A. 2006 Feb 7;103(6):1858-63. doi: 10.1073/pnas.0508977103. Epub 2006 Jan 27.
TGF-beta has been postulated to play an important role in the development of pancreatic cancers. More than 50% of human pancreatic cancers bear mutations of Sma- and Mad-related protein (Smad) 4, a critical protein required for TGF-beta signaling. To evaluate the in vivo function of TGF-beta in the development of pancreatic cancers, we generated a transgenic mouse model with pancreas-specific expression of Smad7, a specific inhibitor of TGF-beta signaling. Through the use of elastase I promoter, we directed the tissue specific expression of exogenous Smad7. Consistently, the exogenous Smad7 was detected only in the pancreas in the transgenic mice, and, furthermore, phosphorylation of Smad2 was blocked in the pancreatic tissues. At 6 months of age, most transgenic animals developed premalignant ductal lesions in the pancreas, with characteristics of pancreatic intraepithelial neoplasia (PanIN), a precursor to invasive pancreatic cancers. The premalignant lesions of the pancreas were accompanied by accelerated proliferation of the ductal epithelium and acinar cells, as well as increased fibrosis around the ductal lesions. This study not only demonstrated that in vivo inactivation of TGF-beta signaling is implicated in the development of early stage of pancreatic cancers, but also provided a promising animal model useful for the investigation and intervention of pancreatic cancers in humans.
据推测,转化生长因子β(TGF-β)在胰腺癌的发展中起重要作用。超过50%的人类胰腺癌存在Sma和Mad相关蛋白(Smad)4的突变,Smad4是TGF-β信号传导所需的关键蛋白。为了评估TGF-β在胰腺癌发展中的体内功能,我们构建了一个胰腺特异性表达Smad7(TGF-β信号传导的特异性抑制剂)的转基因小鼠模型。通过使用弹性蛋白酶I启动子,我们实现了外源Smad7的组织特异性表达。一致的是,仅在转基因小鼠的胰腺中检测到外源Smad7,此外,胰腺组织中Smad2的磷酸化被阻断。在6个月大时,大多数转基因动物在胰腺中出现癌前导管病变,具有胰腺上皮内瘤变(PanIN)的特征,PanIN是侵袭性胰腺癌的前体。胰腺的癌前病变伴随着导管上皮和腺泡细胞的加速增殖,以及导管病变周围纤维化的增加。这项研究不仅证明了TGF-β信号传导的体内失活与胰腺癌早期发展有关,还提供了一个有前景的动物模型,可用于人类胰腺癌的研究和干预。