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Apc+/Delta716 Cdx2+/-复合突变小鼠中mTOR介导的染色体不稳定性导致的结肠息肉病

Colonic polyposis caused by mTOR-mediated chromosomal instability in Apc+/Delta716 Cdx2+/- compound mutant mice.

作者信息

Aoki Koji, Tamai Yoshitaka, Horiike Shigeo, Oshima Masanobu, Taketo Makoto M

机构信息

Department of Pharmacology, Graduate School of Medicine, Kyoto University, Yoshida-Konoé-cho, Sakyo-ku, Kyoto 606-8501, Japan.

出版信息

Nat Genet. 2003 Dec;35(4):323-30. doi: 10.1038/ng1265. Epub 2003 Nov 16.

Abstract

The mammalian homeobox transcription factor CDX2 has key roles in intestinal development and differentiation. Heterozygous Cdx2 mice develop one or two benign hamartomas in the proximal colon, whereas heterozygous Apc(Delta716) mice develop numerous adenomatous polyps, mostly in the small intestine. Here we show that the colonic polyp number is about six times higher in Apc+/Delta716 Cdx2+/- compound mutant mice. Levels of both APC and CDX2 were significantly lower in the distal colon, which caused high anaphase bridge index (ABI) associated with a higher frequency of loss of heterozygosity (LOH) at Apc. In cultured rat intestinal epithelial and human colon cancer cell lines, suppression of CDX2 by antisense RNA caused marked increases in ABI and chromosomal aberrations. This was mediated by stimulation of the mTOR pathway, causing translational deregulation and G1-S acceleration, associated with low levels of p27 and activation of cyclin E-Cdk2. We obtained similar results in the colonic mucosa of Apc+/Delta716) Cdx2+/- compound mutant mice. Forced activation of mTOR through upstream regulator Akt also increased ABI in colon cancer cells. High ABI in all cell lines was suppressed by mTOR inhibitors LY294002 and rapamycin. These results suggest that reduced expression of CDX2 is important in colon tumorigenesis through mTOR-mediated chromosomal instability.

摘要

哺乳动物同源盒转录因子CDX2在肠道发育和分化中起关键作用。杂合Cdx2小鼠在近端结肠会形成一两个良性错构瘤,而杂合Apc(Delta716)小鼠会形成大量腺瘤性息肉,大多位于小肠。我们在此表明,Apc+/Delta716 Cdx2+/-复合突变小鼠的结肠息肉数量约高六倍。APC和CDX2在远端结肠中的水平均显著降低,这导致了高后期桥接指数(ABI),与Apc处更高的杂合性缺失(LOH)频率相关。在培养的大鼠肠上皮细胞和人结肠癌细胞系中,反义RNA抑制CDX2会导致ABI和染色体畸变显著增加。这是由mTOR途径的刺激介导的,导致翻译失调和G1-S期加速,与低水平的p27以及细胞周期蛋白E-Cdk2的激活相关。我们在Apc+/Delta716 Cdx2+/-复合突变小鼠的结肠黏膜中也获得了类似结果。通过上游调节因子Akt强制激活mTOR也会增加结肠癌细胞中的ABI。mTOR抑制剂LY294002和雷帕霉素可抑制所有细胞系中的高ABI。这些结果表明,CDX2表达降低通过mTOR介导的染色体不稳定性在结肠癌发生中起重要作用。

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