Fotedar Rati, Bendjennat Mourad, Fotedar Arun
Institut de Biologie Structurale J.-P. Ebel, Grenoble, France.
Cell Cycle. 2004 Feb;3(2):134-7.
UV or g irradiation mediated DNA damage activates p53 and induces cell cycle arrest. Induction of cyclin dependent kinase inhibitor p21WAF1 by p53 after DNA damage plays an important role in cell cycle arrest after gamma irradiation. The p53 mediated cell cycle arrest has been postulated to allow cells to repair the DNA damage. Repair of UV damaged DNA occurs primarily by the nucleotide excision pathway (NER). It is known that p21WAF1 binds PCNA and inhibits PCNA function in DNA replication. PCNA is also required for repair by NER but there have been conflicting reports on whether p21WAF1 can inhibit PCNA function in NER. It has therefore been difficult to integrate the UV induced cell cycle arrest by p21 in the context of repair of UV damaged DNA. A recent study reported that p21WAF1 protein is degraded after low but not high doses of UV irradiation, that cell cycle arrest after UV is p21 independent, and that at low dose UV irradiation p21WAF1 degradation is essential for optimal DNA repair. These findings shed new light on the role of p21 in the cellular response to UV and clarify some outstanding issues concerning p21WAF1 function.
紫外线(UV)或γ射线照射介导的DNA损伤会激活p53并诱导细胞周期停滞。DNA损伤后p53诱导细胞周期蛋白依赖性激酶抑制剂p21WAF1的产生,这在γ射线照射后的细胞周期停滞中起重要作用。据推测,p53介导的细胞周期停滞可使细胞修复DNA损伤。紫外线损伤DNA的修复主要通过核苷酸切除途径(NER)进行。已知p21WAF1可结合增殖细胞核抗原(PCNA)并抑制其在DNA复制中的功能。PCNA也是NER修复所必需的,但关于p21WAF1是否能抑制PCNA在NER中的功能,存在相互矛盾的报道。因此,在紫外线损伤DNA的修复过程中,很难将p21诱导的紫外线诱导细胞周期停滞整合起来。最近的一项研究报告称,低剂量而非高剂量紫外线照射后p21WAF1蛋白会降解,紫外线照射后的细胞周期停滞不依赖p21,并且在低剂量紫外线照射下,p21WAF1降解对于最佳DNA修复至关重要。这些发现为p21在细胞对紫外线反应中的作用提供了新的线索,并澄清了一些关于p21WAF1功能的突出问题。