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细胞周期检查点对两个紧密相邻的酵母基因MAG1和DDI1的差异调控。

Differential regulation of two closely clustered yeast genes, MAG1 and DDI1, by cell-cycle checkpoints.

作者信息

Zhu Y, Xiao W

机构信息

Department of Microbiology and Immunology, University of Saskatchewan, 107 Wiggins Road, Saskatoon,SK S7N 5E5, Canada.

出版信息

Nucleic Acids Res. 1998 Dec 1;26(23):5402-8. doi: 10.1093/nar/26.23.5402.

DOI:10.1093/nar/26.23.5402
PMID:9826765
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC147989/
Abstract

Eukaryotic DNA-damage checkpoint genes have been shown to not only arrest cells at certain stages, but are also involved in the transcriptional response to DNA damage. However, while the signal transduction for cell-cycle checkpoint is well characterized, it is not clear whether the same signal transduction pathway is responsible for the regulation of all DNA damage-inducible genes. In order to understand how different checkpoint genes are involved in gene regulation, the effects of various checkpoint mutations on the expression of a unique yeast MAG1 - DDI1 dual promoter were examined in this study. MAG1 and DDI1 are transcribed from a common promoter region and co-induced by a variety of DNA damaging agents. However, gene-specific cis -acting elements were also identified, and the two genes are indeed differentially expressed under certain conditions. We found that DDI1 induction was not affected in any of the checkpoint mutants. In contrast, MAG1 induction was completely abolished in the pol2 and rad53 mutants. However, in the mec1-1 or any of the G1/S and G2/M checkpoint mutants, including rad9, rad17 and rad24, DNA damage-induced MAG1 expression was not significantly affected, and a rad9 rad17 double mutation only slightly reduced MAG1 induction. Based on this and previous studies, we present two models for the role of checkpoint genes in transcriptional regulation in response to DNA damage.

摘要

真核生物的DNA损伤检查点基因不仅能使细胞在特定阶段停滞,还参与对DNA损伤的转录反应。然而,虽然细胞周期检查点的信号转导已得到充分表征,但尚不清楚是否相同的信号转导途径负责调控所有DNA损伤诱导基因。为了了解不同的检查点基因如何参与基因调控,本研究检测了各种检查点突变对独特的酵母MAG1 - DDI1双启动子表达的影响。MAG1和DDI1从共同的启动子区域转录,并由多种DNA损伤剂共同诱导。然而,也鉴定出了基因特异性的顺式作用元件,并且这两个基因在某些条件下确实存在差异表达。我们发现,在任何检查点突变体中,DDI1的诱导均未受影响。相反,在pol2和rad53突变体中,MAG1的诱导完全被消除。然而,在mec1-1或任何G1/S和G2/M检查点突变体(包括rad9、rad17和rad24)中,DNA损伤诱导的MAG1表达未受到显著影响,并且rad9 rad17双突变仅略微降低了MAG1的诱导。基于此及先前的研究,我们提出了检查点基因在响应DNA损伤的转录调控中作用的两种模型。

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