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控制哺乳动物的突变负荷:p53和p21对易出错DNA聚合酶活性的调控

Keeping mammalian mutation load in check: regulation of the activity of error-prone DNA polymerases by p53 and p21.

作者信息

Livneh Zvi

机构信息

Department of Biological Chemistry, Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Cell Cycle. 2006 Sep;5(17):1918-22. doi: 10.4161/cc.5.17.3193. Epub 2006 Sep 1.

Abstract

To overcome DNA lesions that block replication the cell employs translesion DNA synthesis (TLS) polymerases, a group of low fidelity DNA polymerases that have the capacity to bypass a wide range of DNA lesions. This TLS process is also termed error-prone repair, due to its inherent mutagenic nature. We have recently shown that the tumor suppressor p53 and the cell cycle inhibitor p21 are global regulators of TLS. When these proteins are missing or nonfunctional, TLS gets out of control: its extent increases to very high levels, and its fidelity decreases, causing an overall increase in mutation load. This may be explained by the loss of selectivity in the bypass of specific DNA lesions by their cognate specialized polymerases, such that lesion bypass continues to a maximum, regardless of the price paid in increased mutations. The p53 and p21 proteins are also required for efficient UV light-induced monoubiquitination of PCNA, which is consistent with a model in which this modification of PCNA is necessary but not sufficient for the normal activity of TLS. This regulation suggests that TLS evolved in mammals as a system that balances gain in survival with a tolerable mutational cost, and that disturbing this balance causes a potentially harmful increase in mutations, which might play a role in carcinogenesis.

摘要

为了克服阻碍复制的DNA损伤,细胞会采用跨损伤DNA合成(TLS)聚合酶,这是一类低保真度的DNA聚合酶,能够绕过多种DNA损伤。由于其固有的诱变性质,这种TLS过程也被称为易错修复。我们最近发现,肿瘤抑制因子p53和细胞周期抑制剂p21是TLS的全局调节因子。当这些蛋白质缺失或功能异常时,TLS就会失控:其程度会增加到非常高的水平,保真度会降低,导致突变负荷总体增加。这可能是由于其同源的特殊聚合酶在绕过特定DNA损伤时失去了选择性,以至于损伤绕过会持续到最大限度,而不顾因突变增加所付出的代价。高效的紫外线诱导PCNA单泛素化也需要p53和p21蛋白,这与一种模型一致,即PCNA的这种修饰对于TLS的正常活性是必要的,但并不充分。这种调节表明,TLS在哺乳动物中作为一种平衡生存收益与可容忍的突变代价的系统而进化,扰乱这种平衡会导致潜在有害的突变增加,这可能在致癌过程中发挥作用。

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