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核糖核苷酸还原酶的DNA损伤与细胞周期调控

DNA damage and cell cycle regulation of ribonucleotide reductase.

作者信息

Elledge S J, Zhou Z, Allen J B, Navas T A

机构信息

Department of Biochemistry, Baylor College of Medicine, Houston, TX 77030.

出版信息

Bioessays. 1993 May;15(5):333-9. doi: 10.1002/bies.950150507.

Abstract

Ribonucleotide reductase (RNR) catalyzes the rate limiting step in the production of deoxyribonucleotides needed for DNA synthesis. In addition to the well documented allosteric regulation, the synthesis of the enzyme is also tightly regulated at the level of transcription. mRNAs for both subunits are cell cycle regulated and inducible by DNA damage in all organisms examined, including E. coli, S. cerevisiae and H. sapiens. This DNA damage regulation is thought to provide a metabolic state that facilitates DNA replicational repair processes. S. cerevisiae also encodes a second large subunit gene, RNR3, that is expressed only in the presence of DNA damage. Genetic analysis of the DNA damage response in S. cerevisiae has shown that RNR expression is under both positive and negative control. Among mutants constitutive for RNR expression are the general transcriptional repression genes, SSN6 and TUP1. Mutations in POL1 and POL3 also activate RNR expression, indicating that the DNA damage sensory network may respond directly to blocks in DNA synthesis. A protein kinase, Dun1, has been identified that controls inducibility of RNR1, RNR2 and RNR3 in response to DNA damage and replication blocks. This result suggests that the RNR genes in S. cerevisiae form a regulon that is coordinately regulated by protein phosphorylation in response to DNA damage.

摘要

核糖核苷酸还原酶(RNR)催化DNA合成所需脱氧核糖核苷酸生成过程中的限速步骤。除了有充分文献记载的变构调节外,该酶的合成在转录水平也受到严格调控。两个亚基的mRNA在细胞周期中受到调控,并且在所有已检测的生物体(包括大肠杆菌、酿酒酵母和人类)中都可被DNA损伤诱导。这种DNA损伤调节被认为提供了一种有利于DNA复制修复过程的代谢状态。酿酒酵母还编码第二个大亚基基因RNR3,该基因仅在存在DNA损伤时表达。对酿酒酵母中DNA损伤应答的遗传分析表明,RNR的表达受到正调控和负调控。在RNR表达组成型的突变体中,有一般转录抑制基因SSN6和TUP1。POL1和POL3中的突变也会激活RNR表达,这表明DNA损伤传感网络可能直接对DNA合成中的阻断作出反应。已鉴定出一种蛋白激酶Dun1,它可控制RNR1、RNR2和RNR3对DNA损伤和复制阻断的诱导性。这一结果表明,酿酒酵母中的RNR基因形成了一个调控子,在DNA损伤应答中通过蛋白磷酸化进行协同调控。

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