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p16Ink4a缺失而p19Arf保留会使小鼠易患肿瘤。

Loss of p16Ink4a with retention of p19Arf predisposes mice to tumorigenesis.

作者信息

Sharpless N E, Bardeesy N, Lee K H, Carrasco D, Castrillon D H, Aguirre A J, Wu E A, Horner J W, DePinho R A

机构信息

Departments of Adult Oncology, Medicine and Genetics, Harvard Medical School and the Dana-Farber Cancer Institute, Boston, Massachusetts 02115, USA.

出版信息

Nature. 2001 Sep 6;413(6851):86-91. doi: 10.1038/35092592.

Abstract

The cyclin-dependent kinase inhibitor p16INK4a can induce senescence of human cells, and its loss by deletion, mutation or epigenetic silencing is among the most frequently observed molecular lesions in human cancer. Overlapping reading frames in the INK4A/ARF gene encode p16INK4a and a distinct tumour-suppressor protein, p19ARF (ref. 3). Here we describe the generation and characterization of a p16Ink4a-specific knockout mouse that retains normal p19Arf function. Mice lacking p16Ink4a were born with the expected mendelian distribution and exhibited normal development except for thymic hyperplasia. T cells deficient in p16Ink4a exhibited enhanced mitogenic responsiveness, consistent with the established role of p16Ink4a in constraining cellular proliferation. In contrast to mouse embryo fibroblasts (MEFs) deficient in p19Arf (ref. 4), p16Ink4a-null MEFs possessed normal growth characteristics and remained susceptible to Ras-induced senescence. Compared with wild-type MEFs, p16Ink4a-null MEFs exhibited an increased rate of immortalization, although this rate was less than that observed previously for cells null for Ink4a/Arf, p19Arf or p53 (refs 4, 5). Furthermore, p16Ink4a deficiency was associated with an increased incidence of spontaneous and carcinogen-induced cancers. These data establish that p16Ink4a, along with p19Arf, functions as a tumour suppressor in mice.

摘要

细胞周期蛋白依赖性激酶抑制剂p16INK4a可诱导人类细胞衰老,其因缺失、突变或表观遗传沉默而失活是人类癌症中最常见的分子损伤之一。INK4A/ARF基因中的重叠阅读框编码p16INK4a和一种不同的肿瘤抑制蛋白p19ARF(参考文献3)。在此,我们描述了一种保留正常p19Arf功能的p16Ink4a特异性敲除小鼠的产生和特征。缺乏p16Ink4a的小鼠出生时具有预期的孟德尔分布,除胸腺增生外发育正常。缺乏p16Ink4a的T细胞表现出增强的促有丝分裂反应性,这与p16Ink4a在限制细胞增殖中的既定作用一致。与缺乏p19Arf的小鼠胚胎成纤维细胞(MEF)(参考文献4)不同,缺乏p16Ink4a的MEF具有正常的生长特性,并且仍然易受Ras诱导的衰老影响。与野生型MEF相比,缺乏p16Ink4a的MEF表现出更高的永生化率,尽管该速率低于先前观察到的INK4a/Arf、p19Arf或p53缺失的细胞(参考文献4、5)。此外,p16Ink4a缺陷与自发和致癌物诱导的癌症发病率增加有关。这些数据表明,p16Ink4a与p19Arf一样,在小鼠中起肿瘤抑制作用。

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