野生型p53在放射耐药黑色素瘤细胞中的异常调控和功能。

K Satyamoorthy, N H Chehab, M J Waterman, M C Lien, W S El-Deiry, M Herlyn, T D Halazonetis
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摘要

散发性人类肿瘤和遗传性癌症易感综合征Li-Fraumeni通常与p53肿瘤抑制基因突变有关,这些突变损害了其作为DNA损伤检查点的功能。携带野生型p53等位基因的Li-Fraumeni患者的一个亚群存在chk2/hcds1突变,这是p53蛋白DNA损伤的信号基因之一。这表明p53可能通过靶向DNA损伤信号通路的突变而在人类癌症中保持失活。黑色素瘤细胞具有高度的抗辐射能力,但它们表达野生型p53蛋白,这增加了激活p53以响应DNA损伤的途径存在缺陷的可能性。我们已经描述了一个不依赖chk2/hcds1的DNA损伤信号通路,该通路靶向p53的COOH末端Ser-376进行去磷酸化,并导致p53功能活性增加。我们现在报道,在几种表达野生型p53的人类黑色素瘤细胞系中,Ser-376的磷酸化状态不受DNA损伤的调节。在这些细胞系中,内源性野生型p53蛋白和高水平的异位野生型p53都不会导致细胞周期阻滞或凋亡。因此,p53对DNA损伤的缺陷激活可能是人类黑色素瘤细胞放射抗性的基础。
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Aberrant regulation and function of wild-type p53 in radioresistant melanoma cells.

Sporadic human tumors and the hereditary cancer predisposition syndrome Li-Fraumeni are frequently associated with mutations in the p53 tumor suppressor gene that compromise its ability to function as a DNA damage checkpoint. A subset of Li-Fraumeni patients with wild-type p53 alleles have mutations in chk2/hcds1, one of the genes signaling the presence of DNA damage to the p53 protein. This suggests that p53 may be kept inactive in human cancer by mutations targeting DNA damage signaling pathways. Melanoma cells are highly radioresistant, yet they express wild-type p53 protein, raising the possibility of defects in the pathways that activate p53 in response to DNA damage. We have described a chk2/hcds1-independent DNA damage signaling pathway that targets Ser-376 within the COOH terminus of p53 for dephosphorylation and leads to increased p53 functional activity. We now report that in several human melanoma cell lines that express wild-type p53, the phosphorylation state of Ser-376 was not regulated by DNA damage. In these cell lines, neither the endogenous wild-type p53 protein nor high levels of ectopic wild-type p53 led to cell cycle arrest or apoptosis. Thus, defective activation of p53 in response to DNA damage may underlie the radioresistance of human melanoma cells.

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