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Ixr1 对于核糖核苷酸还原酶 Rnr1 的表达和 dNTP 池的维持是必需的。

Ixr1 is required for the expression of the ribonucleotide reductase Rnr1 and maintenance of dNTP pools.

机构信息

Department of Medical Biochemistry and Biophysics, Umeå University, Umeå, Sweden.

出版信息

PLoS Genet. 2011 May;7(5):e1002061. doi: 10.1371/journal.pgen.1002061. Epub 2011 May 5.

Abstract

The Saccharomyces cerevisiae Dun1 protein kinase is a downstream target of the conserved Mec1-Rad53 checkpoint pathway. Dun1 regulates dNTP pools during an unperturbed cell cycle and after DNA damage by modulating the activity of ribonucleotide reductase (RNR) by multiple mechanisms, including phosphorylation of RNR inhibitors Sml1 and Dif1. Dun1 also activates DNA-damage-inducible genes by inhibiting the Crt1 transcriptional repressor. Among the genes repressed by Crt1 are three out of four RNR genes: RNR2, RNR3, and RNR4. The fourth RNR gene, RNR1, is also DNA damage-inducible, but is not controlled by Crt1. It has been shown that the deletion of DUN1 is synthetic lethal with the deletion of IXR1, encoding an HMG-box-containing DNA binding protein, but the reason for this lethality is not known. Here we demonstrate that the dun1 ixr1 synthetic lethality is caused by an inadequate RNR activity. The deletion of IXR1 results in decreased dNTP levels due to a reduced RNR1 expression. The ixr1 single mutants compensate for the reduced Rnr1 levels by the Mec1-Rad53-Dun1-Crt1-dependent elevation of Rnr3 and Rnr4 levels and downregulation of Sml1 levels, explaining why DUN1 is indispensible in ixr1 mutants. The dun1 ixr1 synthetic lethality is rescued by an artificial elevation of the dNTP pools. We show that Ixr1 is phosphorylated at several residues and that Ser366, a residue important for the interaction of HMG boxes with DNA, is required for Ixr1 phosphorylation. Ixr1 interacts with DNA at multiple loci, including the RNR1 promoter. Ixr1 levels are decreased in Rad53-deficient cells, which are known to have excessive histone levels. A reduction of the histone gene dosage in the rad53 mutant restores Ixr1 levels. Our results demonstrate that Ixr1, but not Dun1, is required for the proper RNR1 expression both during an unperturbed cell cycle and after DNA damage.

摘要

酿酒酵母 Dun1 蛋白激酶是保守的 Mek1-Rad53 检查点途径的下游靶标。Dun1 通过多种机制调节核糖核苷酸还原酶(RNR)的活性,从而在未受干扰的细胞周期和 DNA 损伤后调节 dNTP 池,包括磷酸化 RNR 抑制剂 Sml1 和 Dif1。Dun1 还通过抑制 Crt1 转录阻遏物来激活 DNA 损伤诱导基因。在受 Crt1 抑制的基因中,有四个 RNR 基因中的三个:RNR2、RNR3 和 RNR4。第四个 RNR 基因 RNR1 也是 DNA 损伤诱导的,但不受 Crt1 控制。已经表明,删除 DUN1 与编码含有 HMG 盒的 DNA 结合蛋白的 IXR1 的缺失是合成致死的,但这种致死性的原因尚不清楚。在这里,我们证明 dun1 ixr1 合成致死性是由于 RNR 活性不足引起的。IXR1 的缺失由于 RNR1 表达减少而导致 dNTP 水平降低。ixr1 单突变体通过 Mek1-Rad53-Dun1-Crt1 依赖性的 Rnr3 和 Rnr4 水平升高和 Sml1 水平下调来补偿 Rnr1 水平的降低,这解释了为什么 DUN1 在 ixr1 突变体中是不可或缺的。通过人为提高 dNTP 池可以挽救 dun1 ixr1 合成致死性。我们表明,Ixr1 在几个残基上被磷酸化,并且对 HMG 盒与 DNA 相互作用很重要的残基 Ser366 是 Ixr1 磷酸化所必需的。Ixr1 在多个基因座与 DNA 相互作用,包括 RNR1 启动子。在已知具有过多组蛋白水平的 Rad53 缺陷细胞中,Ixr1 水平降低。在 rad53 突变体中降低组蛋白基因剂量可恢复 Ixr1 水平。我们的结果表明,在未受干扰的细胞周期和 DNA 损伤后,Ixr1(而不是 Dun1)是适当的 RNR1 表达所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f59d/3088718/a25a9b3ac012/pgen.1002061.g001.jpg

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