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未分化小鼠皮肤肿瘤中p16INK4a和p15INK4b的缺失及调控改变

Deletion and altered regulation of p16INK4a and p15INK4b in undifferentiated mouse skin tumors.

作者信息

Linardopoulos S, Street A J, Quelle D E, Parry D, Peters G, Sherr C J, Balmain A

机构信息

Cancer Research Campaign Beatson Laboratories, University of Glasgow, Department of Medical Oncology, United Kingdom.

出版信息

Cancer Res. 1995 Nov 15;55(22):5168-72.

PMID:7585567
Abstract

p16INK4a and p15INK4b are cell cycle regulators that specifically bind to and inhibit the cyclin D-dependent kinases, cdk4 and cdk6. Because these genes undergo frequent deletions and/or mutations in various human cancers, we examined the status and expression of the cognate mouse cdk inhibitors in a panel of 29 cell lines, as well as in 12 primary tumors, representing different stages of mouse skin carcinogenesis. Deletion of p16INK4a and/or p15INK4b was seen in 8 of 10 cell lines derived from spindle carcinomas, the most advanced stage of skin carcinogenesis. Five showed deletion of both genes, and three had independent deletions of p16INK4a or p15INK4b, but in those retaining p16INK4a, expression of the protein was not detected. By contrast, none of 19 more differentiated squamous cell lines exhibited such deletions. In several cases, primary tumor DNA was available, and two spindle tumors showed the same deletion pattern as observed in the corresponding cell lines. In apparent contrast, comparison of two clonally related squamous and spindle cell lines derived from a single carcinoma showed unusually high levels of p16INK4a and p15INK4b only in the invasive spindle cells. Therefore, deletion or altered regulation of p16INK4a and p15INK4b occur concomitantly with the loss of differentiation associated with the late spindle stage of tumor progression in mouse skin.

摘要

p16INK4a和p15INK4b是细胞周期调节因子,它们特异性结合并抑制细胞周期蛋白D依赖性激酶cdk4和cdk6。由于这些基因在各种人类癌症中经常发生缺失和/或突变,我们检测了29种细胞系以及12种原发性肿瘤中同源小鼠细胞周期蛋白依赖性激酶抑制剂的状态和表达情况,这些细胞系和原发性肿瘤代表了小鼠皮肤癌发生的不同阶段。在源自纺锤体癌(皮肤癌发生的最晚期阶段)的10种细胞系中,有8种出现了p16INK4a和/或p15INK4b的缺失。5种细胞系显示两个基因均缺失,3种细胞系独立缺失p16INK4a或p15INK4b,但在保留p16INK4a的细胞系中,未检测到该蛋白的表达。相比之下,19种分化程度更高的鳞状细胞系均未出现此类缺失。在一些情况下,可以获得原发性肿瘤的DNA,两种纺锤体肿瘤显示出与相应细胞系中观察到的相同缺失模式。明显不同的是,对源自同一癌症的两个克隆相关的鳞状细胞系和纺锤体细胞系进行比较,结果显示仅在侵袭性纺锤体细胞中p16INK4a和p15INK4b水平异常高。因此,p16INK4a和p15INK4b的缺失或调节改变与小鼠皮肤肿瘤进展后期纺锤体阶段相关的分化丧失同时发生。

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