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首页> 外文期刊>Oncogene >A novel Ku70 function in colorectal homeostasis separate from nonhomologous end joining
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A novel Ku70 function in colorectal homeostasis separate from nonhomologous end joining

机译:与非同源末端连接分离的新型Ku70在结直肠稳态中的功能

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摘要

Ku70, a known nonhomologous end-joining (NHEJ) factor, also functions in tumor suppression, although this molecular mechanism remains uncharacterized. Previously, we showed that mice deficient for DNA ligase IV (Lig4), another key NHEJ factor, succumbed to aggressive lymphoma in the absence of tumor suppressor p53. However, the tumor phenotype is abrogated by the introduction of a hypomorphic mutant p53~(R172P), which impaired p53-mediated apoptosis but not cell-cycle arrest. However, Lig4~(鈭?鈭?/sup>p53~(R172P) mice succumbed to severe diabetes. To further elucidate the role of NHEJ and p53-mediated apoptosis in vivo , we bred Ku70~(鈭?鈭?/sup> p53~(R172P) mice. Unexpectedly, these mice were free of diabetes, although 80% of the mutant mice had abnormally enlarged colons with pronounced inflammation. Remarkably, most of these mutant mice progressed to dysplasia, adenoma and adenocarcinoma; this is in contrast to the Lig4~(鈭?鈭?/sup>p53~(R172P) phenotype, strongly suggesting an NHEJ-independent function of Ku70. Significantly, our analyses of Ku70~(鈭?鈭?/sup>p53~(R172P) colonic epithelial cells show nuclear stabilization of 尾-catenin accompanied by higher expression of cyclin D1 and c-Myc in affected colon sections than in control samples. This is not due to the p53 mutation, as Ku70~(鈭?鈭?/sup> mice share this phenotype. Our results not only unravel a novel function of Ku70 essential for colon homeostasis, but also establish an excellent in vivo model in which to study how chronic inflammation and abnormal cellular proliferation underlie tumorigenesis and tumor progression in the colon.
机译:Ku70,一种已知的非同源末端连接(NHEJ)因子,在肿瘤抑制中也起作用,尽管这种分子机制仍然未知。以前,我们显示了缺乏DNA连接酶IV(Lig4)(另一个关键的NHEJ因子)的小鼠在没有肿瘤抑制因子p53的情况下会死于侵袭性淋巴瘤。然而,通过引入亚型突变体p53〜(R172P)可以消除肿瘤的表型,该突变体削弱了p53介导的细胞凋亡,但不破坏细胞周期停滞。但是,Lig4〜(p53〜(R172P))小鼠死于严重的糖尿病,为了进一步阐明NHEJ和p53介导的细胞凋亡在体内的作用,我们繁殖了Ku70〜(p53〜(R172P))。 / sup> p53〜(R172P)小鼠,尽管80%的突变小鼠结肠明显变大,并伴有明显的炎症,但这些小鼠没有患糖尿病,值得注意的是,大多数这些突变小鼠发展为发育异常,腺瘤和腺癌;与Lig4〜(鈭?鈭?/ sup> p53〜(R172P)表型相反,强烈暗示了Ku70不依赖NHEJ的功能。重要的是,我们对Ku70〜(鈭?鈭?/ sup> p53〜( R172P)结肠上皮细胞在受影响的结肠切片中显示出β-连环蛋白的核稳定性,并伴有细胞周期蛋白D1和c-Myc的较高表达,这不是由于p53突变引起的,如Ku70〜(鈭?鈭?/我们的研究结果不仅揭示了结肠稳态所必需的Ku70的新功能,而且还在小鼠体内建立了出色的体内模型研究慢性炎症和异常细胞增殖如何构成结肠癌发生和肿瘤进展的基础。

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