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rfx1基因表达的自抑制:从酵母到人类在应对DNA复制停滞时的功能保守性。

Autorepression of rfx1 gene expression: functional conservation from yeast to humans in response to DNA replication arrest.

作者信息

Lubelsky Yoav, Reuven Nina, Shaul Yosef

机构信息

Department of Molecular Genetics, Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Mol Cell Biol. 2005 Dec;25(23):10665-73. doi: 10.1128/MCB.25.23.10665-10673.2005.

Abstract

The yeast Saccharomyces cerevisiae Crt1 transcription repressor is an effector of the DNA damage and replication checkpoint pathway. Crt1 binds and represses genes encoding ribonucleotide reductase (RNR) and its own promoter, establishing a negative-feedback pathway. The role of Rfx1, the mammalian Crt1 homologue, remained uncertain. In this study we investigated the possibility that Rfx1 plays a similar function in animal cells. We show here that, like Crt1, Rfx1 binds and represses its own promoter. Furthermore, Rfx1 binding to its promoter is reduced upon induction of a DNA replication block by hydroxyurea, which led to a release of repression. Significantly, like Crt1, Rfx1 binds and represses the RNR-R2 gene. Upon blocking replication and UV treatment, expression of both Rfx1 and RNR-R2 is induced; however, unlike the results seen with the RNR-R2 gene, the derepression of the RFX1 gene is only partially blocked by inhibiting Chk1, the DNA checkpoint kinase. This report provides evidence for a common mechanism for Crt1 and Rfx1 expression and for the conservation of their mode of action in response to a DNA replication block. We suggest that Rfx1 plays a role in the DNA damage response by down-regulating a subset of genes whose expression is increased in response to replication blocking and UV-induced DNA damage.

摘要

酵母酿酒酵母Crt1转录阻遏物是DNA损伤和复制检查点途径的效应器。Crt1结合并抑制编码核糖核苷酸还原酶(RNR)的基因及其自身的启动子,建立负反馈途径。哺乳动物Crt1同源物Rfx1的作用仍不确定。在本研究中,我们研究了Rfx1在动物细胞中发挥类似功能的可能性。我们在此表明,与Crt1一样,Rfx1结合并抑制其自身的启动子。此外,在羟基脲诱导DNA复制阻滞时,Rfx1与其启动子的结合减少,这导致抑制作用的解除。重要的是,与Crt1一样,Rfx1结合并抑制RNR-R2基因。在阻断复制和紫外线处理后,Rfx1和RNR-R2的表达均被诱导;然而,与RNR-R2基因的结果不同,RFX1基因的去抑制仅被DNA检查点激酶Chk1的抑制部分阻断。本报告为Crt1和Rfx1表达的共同机制以及它们在响应DNA复制阻滞时作用模式的保守性提供了证据。我们认为,Rfx1通过下调一部分因复制阻滞和紫外线诱导的DNA损伤而表达增加的基因,在DNA损伤反应中发挥作用。

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