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Role ofp16INK4Ain Replicative Senescence and DNA Damage-Induced Premature Senescence in p53-Deficient Human Cells

机译:p16INK4A在p53缺陷型人类细胞中复制衰老和DNA损伤诱导的过早衰老中的作用

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Thep16INK4A(hereafter p16) tumor suppressor is encoded by theINK4A/ARFlocus which is among the most commonly dysregulated sequences in human cancer. By inhibiting cyclin-dependent kinases, p16 activates the G1-S checkpoint, and this response is often considered to be critical for establishing a senescence-like growth arrest. Not all studies support a universal role for p16 in senescence. Single-cell analysis of noncancerous human fibroblast cultures undergoing senescence as a function of culture age (replicative senescence) has revealed that p16 is not expressed in the majority (>90%) of cells that exhibit features of senescence (e.g., flattened and enlarged morphology coupled with senescence-associatedβ-galactosidase expression), ruling out a requirement for p16 in this process. In addition, ionizing radiation triggers premature senescence in human cancer cell lines that do not express p16. These observations are made with cells that express wild-type p53, a key mediator of the DNA damage response. In this paper, we examine the growing evidence suggesting a negative regulatory relationship between p16 and p53 and discuss recent reports that implicate a role for p16 in replicative senescence and ionizing radiation-induced premature senescence in human cells that lack wild-type p53 function.
机译:p16INK4A(以下称p16)肿瘤抑制因子由INK4A / ARF基因座编码,这是人类癌症中最常见的失调序列。通过抑制细胞周期蛋白依赖性激酶,p16激活了G1-S检查点,这种反应通常被认为对建立衰老样生长停滞至关重要。并非所有研究都支持p16在衰老中的普遍作用。对经历衰老的非癌性人类成纤维细胞培养物进行单细胞分析(发现其具有衰老功能(复制性衰老))表明,在具有衰老特征(例如扁平化和扩大形态)的大多数细胞中,p16不表达(> 90%)加上与衰老相关的β-半乳糖苷酶表达),排除了在此过程中对p16的需求。此外,电离辐射会触发不表达p16的人类癌细胞系中的过早衰老。这些观察是用表达野生型p53(DNA损伤反应的关键介体)的细胞进行的。在本文中,我们检查了越来越多的证据表明p16和p53之间存在负调控关系,并讨论了最近的报道,这些报道暗示了p16在缺乏野生型p53功能的人类细胞中的复制衰老和电离辐射诱导的衰老中的作用。

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