Stancikova Jitka, Krausova Michaela, Kolar Michal, Fafilek Bohumil, Svec Jiri, Sedlacek Radislav, Neroldova Magdalena, Dobes Jan, Horazna Monika, Janeckova Lucie, Vojtechova Martina, Oliverius Martin, Jirsa Milan, Korinek Vladimir
Institute of Molecular Genetics, Academy of Sciences of the Czech Republic, Videnska 1083142 20 Prague 4, Czech Republic; Faculty of Science, Charles University in Prague, Albertov 6, 128 43 Praha 2, Czech Republic.
Institute of Molecular Genetics, Academy of Sciences of the Czech Republic, Videnska 1083142 20 Prague 4, Czech Republic.
Cell Signal. 2015 Feb;27(2):245-56. doi: 10.1016/j.cellsig.2014.11.008. Epub 2014 Nov 14.
The activity of the Wnt pathway undergoes complex regulation to ensure proper functioning of this principal signaling mechanism during development of adult tissues. The regulation may occur at several levels and includes both positive and negative feedback loops. In the present study we employed one of such negative feedback regulators, naked cuticle homolog 1 (Nkd1), to follow the Wnt pathway activity in the intestine and liver and in neoplasia originated in these organs. Using lineage tracing in transgenic mice we localized Nkd1 mRNA to the bottom parts of the small intestinal crypts and hepatocytes surrounding the central vein of the hepatic lobule. Furthermore, in two mouse models of intestinal tumorigenesis, Nkd1 expression levels were elevated in tumors when compared to healthy tissue. We utilized a collection of human intestinal polyps and carcinomas to confirm that NKD1 represents a robust marker of neoplastic growth. In addition, expression analysis of NKD1 in liver cancer showed that high expression levels of the gene distinguish a subclass of hepatocellular carcinomas related to aberrant Wnt signaling. Finally, our results were confirmed by bioinformatic analysis of large publicly available datasets that included gene expression profiling and high-throughput sequencing data of human colon and liver cancer specimens.
Wnt信号通路的活性受到复杂调控,以确保该主要信号机制在成体组织发育过程中正常发挥作用。这种调控可能发生在多个层面,包括正反馈和负反馈回路。在本研究中,我们采用了一种这样的负反馈调节因子——无翅表皮同源物1(Nkd1),来追踪肠道和肝脏以及源自这些器官的肿瘤形成过程中的Wnt信号通路活性。通过对转基因小鼠进行谱系追踪,我们将Nkd1 mRNA定位到小肠隐窝底部以及肝小叶中央静脉周围的肝细胞中。此外,在两种肠道肿瘤发生的小鼠模型中,与健康组织相比,肿瘤中的Nkd1表达水平升高。我们利用一组人类肠道息肉和癌组织来证实NKD1是肿瘤生长的一个可靠标志物。此外,对肝癌中NKD1的表达分析表明,该基因的高表达水平区分出了一类与异常Wnt信号相关的肝细胞癌。最后,我们的结果通过对大型公开可用数据集的生物信息学分析得到了证实,这些数据集包括人类结肠癌和肝癌标本的基因表达谱和高通量测序数据。