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CDK4或CDK2在小鼠口腔中的表达在成年垂体中得以保留,对肿瘤发生具有不同影响。

Expression of CDK4 or CDK2 in mouse oral cavity is retained in adult pituitary with distinct effects on tumorigenesis.

作者信息

Macias Everardo, Miliani de Marval Paula L, Senderowicz Adrian, Cullen John, Rodriguez-Puebla Marcelo L

机构信息

Center for Comparative Medicine and Translational Research, Molecular Biomedical Sciences, North Carolina State University, Raleigh, North Carolina 27606, USA.

出版信息

Cancer Res. 2008 Jan 1;68(1):162-71. doi: 10.1158/0008-5472.CAN-07-2461.

DOI:10.1158/0008-5472.CAN-07-2461
PMID:18172308
Abstract

The keratin 5 (K5) promoter drives transgenic expression to the basal cell layer of stratified epithelia. Surprisingly, analysis of K5CDK4 and K5CDK2 transgenic mouse embryos showed CDK4 and CDK2 expression not only in the expected tissues, but also in the adenohypophysis. This organ is derived from an upwards growth of the primitive oropharynx, a K5-expressing tissue. We show that transgenic expression of CDKs in the embryonic oral ectoderm is specifically retained in undifferentiated cells from the pars intermedia of the adenohypophysis. Interestingly, we found that K5CDK4 mice show a decreased number of pituitary stem cells, even though CDK4 is not expressed in the stem cells but in transit-amplifying (TA)-like cells. Interestingly, CDK4-expressing cells, but not CDK2-expressing cells, strongly synergize with lack of p27(Kip1) to generate pituitary carcinomas that appear with shortened latency and are drastically more aggressive than those arising in p27(-/-) mice. Thus, we show that deregulation of CDK expression in the primitive oral epithelium plays a unique function, providing a selective advantage that gives rise to transgene-positive TA-like pituitary cells. Furthermore, retention of CDK4 in these TA-like pituitary cells synergizes with loss of p27(Kip1) to induce pituitary adenocarcinomas. This model suggests that forced expression of CDK4 sensitizes cells and synergizes with a second change resulting in tumor development.

摘要

角蛋白5(K5)启动子驱动转基因在复层上皮的基底细胞层表达。令人惊讶的是,对K5CDK4和K5CDK2转基因小鼠胚胎的分析显示,CDK4和CDK2不仅在预期组织中表达,还在腺垂体中表达。该器官源自原始口咽的向上生长,而原始口咽是表达K5的组织。我们发现,胚胎口腔外胚层中CDK的转基因表达特异性保留在腺垂体中间部的未分化细胞中。有趣的是,我们发现K5CDK4小鼠的垂体干细胞数量减少,尽管CDK4不在干细胞中表达,而是在过渡放大(TA)样细胞中表达。有趣的是,表达CDK4的细胞而非表达CDK2的细胞与缺乏p27(Kip1)强烈协同作用,产生潜伏期缩短且比p27(-/-)小鼠中出现的垂体癌更具侵袭性的垂体癌。因此,我们表明原始口腔上皮中CDK表达的失调发挥了独特作用,提供了一种选择优势,从而产生转基因阳性TA样垂体细胞。此外,这些TA样垂体细胞中CDK4的保留与p27(Kip1)的缺失协同作用,诱导垂体腺癌。该模型表明,CDK4的强制表达使细胞敏感,并与导致肿瘤发生的第二次变化协同作用。

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