Missero C, Di Cunto F, Kiyokawa H, Koff A, Dotto G P
Cutaneous Biology Research Center, Harvard Medical School, Massachusetts General Hospital, Charlestown 02129, USA.
Genes Dev. 1996 Dec 1;10(23):3065-75. doi: 10.1101/gad.10.23.3065.
p21Cip1/WAF1 was the first cyclin-dependent kinase (CDK) inhibitor to be identified, as a mediator of p53 in DNA damage-induced growth arrest, cell senescence, and direct CDK regulation. p21 may also play an important role in differentiation-associated growth arrest, as its expression is augmented in many terminally differentiating cells. A general involvement of p21 in growth/differentiation control and tumor suppression has been questioned, as mice lacking p21 undergo a normal development, harbor no gross alterations in any of their organs, and exhibit no increase in spontaneous tumor development. However, a significant imbalance between growth and differentiation could be unmasked under conditions where normal homeostatic mechanisms are impaired. We report here that primary keratinocytes derived from p21 knockout mice, transformed with a ras oncogene, and injected subcutaneously into nude mice exhibit a very aggressive tumorigenic behavior, which is not observed with wild-type control keratinocytes nor with keratinocytes with a disruption of the closely related p27 gene. p21 knockout keratinocytes tested under well-defined in vitro conditions show a significantly increased proliferative potential, which is also observed but to a lesser extent with p27 knockout cells. More profound differences were found in the differentiation behavior of p21 versus p27 knockout keratinocytes, with p21 (but not p27) deficiency causing a drastic down-modulation of differentiation markers linked with the late stages of the keratinocyte terminal differentiation program. Thus, our results reveal a so far undetected role of p21 in tumor suppression, demonstrate that this function is specific as it cannot be attributed to the closely related p27 molecule, and point to an essential involvement of p21 in terminal differentiation control, which may account for its role in tumor suppression.
p21Cip1/WAF1是首个被鉴定出的细胞周期蛋白依赖性激酶(CDK)抑制剂,作为p53在DNA损伤诱导的生长停滞、细胞衰老及直接CDK调节中的介质。p21在与分化相关的生长停滞中可能也起重要作用,因为其表达在许多终末分化细胞中增强。p21是否普遍参与生长/分化控制及肿瘤抑制一直存在疑问,因为缺乏p21的小鼠发育正常,任何器官均无明显改变,且自发肿瘤发生未见增加。然而,在正常稳态机制受损的情况下,生长与分化之间的显著失衡可能会显现出来。我们在此报告,源自p21基因敲除小鼠的原代角质形成细胞,用ras癌基因转化后皮下注射到裸鼠体内,表现出极具侵袭性的致瘤行为,野生型对照角质形成细胞及p27基因(与之密切相关)缺失的角质形成细胞均未观察到这种行为。在明确的体外条件下测试,p21基因敲除的角质形成细胞显示出显著增强的增殖潜能,p27基因敲除的细胞也观察到这种现象,但程度较轻。在p21与p27基因敲除的角质形成细胞的分化行为上发现了更显著的差异,p21(而非p27)缺陷导致与角质形成细胞终末分化程序后期相关的分化标志物大幅下调。因此,我们的结果揭示了p21在肿瘤抑制中迄今未被发现的作用,证明该功能具有特异性,因为它不能归因于密切相关的p27分子,并指出p21在终末分化控制中起关键作用,这可能解释了其在肿瘤抑制中的作用。