Gross Isabelle, Lhermitte Benoit, Domon-Dell Claire, Duluc Isabelle, Martin Elisabeth, Gaiddon Christian, Kedinger Michele, Freund Jean-Noël
Development and Physiopathology of the Intestine and Pancreas, 3, avenue Molière, 67200 Strasbourg, France.
Oncogene. 2005 Dec 1;24(54):7955-63. doi: 10.1038/sj.onc.1208945.
The Caudal-related homeodomain transcription factor Cdx2 plays a key role in intestinal cell fate determination. Reduction of Cdx2 expression is a feature of many human colon carcinomas and inactivation of one cdx2 allele facilitates the development of invasive adenocarcinoma in the murine colon. Here, we investigated the post-translational regulation of Cdx2. We showed that various forms of Cdx2 coexist in the intestine and colon cancer cell lines, some of them being phosphorylated forms. We found that cyclin-dependent kinase 2 phosphorylated Cdx2 in vitro and in vivo. Using site-specific mutagenesis, we identified serine 281 as a new key residue for Cdx2 phosphorylation. Intriguingly, serine 281 belongs to a conserved motif of four evenly spaced serines (the 4S motif) similar to the one controlling beta-catenin degradation by the proteasome pathway. A nonphosphorylated mutant Cdx2 lacking the 4S motif (4S>A) exhibited reduced polyubiquitination upon proteasome inhibition and increased stability compared to wild-type Cdx2. In addition, we found that this mutant was less efficient to suppress colony formation than wild-type Cdx2. Thus, our data highlight a novel post-translational mechanism controlling Cdx2 degradation via phosphorylation and polyubiquitination, which may be of importance for intestinal development and cancer.
尾型相关同源结构域转录因子Cdx2在肠道细胞命运决定中起关键作用。Cdx2表达降低是许多人类结肠癌的一个特征,一个cdx2等位基因的失活促进了小鼠结肠侵袭性腺癌的发展。在此,我们研究了Cdx2的翻译后调控。我们发现多种形式的Cdx2共存于肠道和结肠癌细胞系中,其中一些是磷酸化形式。我们发现细胞周期蛋白依赖性激酶2在体外和体内均可使Cdx2磷酸化。通过位点特异性诱变,我们确定丝氨酸281是Cdx2磷酸化的一个新的关键残基。有趣的是,丝氨酸281属于一个由四个间隔均匀的丝氨酸组成的保守基序(4S基序),类似于通过蛋白酶体途径控制β-连环蛋白降解的基序。与野生型Cdx2相比,缺乏4S基序(4S>A)的非磷酸化突变体Cdx2在蛋白酶体抑制后表现出多聚泛素化减少和稳定性增加。此外,我们发现该突变体抑制集落形成的效率低于野生型Cdx2。因此,我们的数据突出了一种通过磷酸化和多聚泛素化控制Cdx2降解的新型翻译后机制,这可能对肠道发育和癌症具有重要意义。