首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Regulation of Histone Deposition Proteins Asf1/Hir1 by Multiple DNA Damage Checkpoint Kinases in Saccharomyces cerevisiae
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Regulation of Histone Deposition Proteins Asf1/Hir1 by Multiple DNA Damage Checkpoint Kinases in Saccharomyces cerevisiae

机译:酿酒酵母中多种DNA损伤检查点激酶对组蛋白沉积蛋白Asf1 / Hir1的调节。

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CAF-1, Hir proteins, and Asf1 are histone H3/H4 binding proteins important for chromatin-mediated transcriptional silencing. We explored genetic and physical interactions between these proteins and S-phase/DNA damage checkpoint kinases in the budding yeast Saccharomyces cerevisiae . Although cells lacking checkpoint kinase Mec1 do not display defects in telomeric gene silencing, silencing was dramatically reduced in cells lacking both Mec1 and the Cac1 subunit of CAF-1. Silencing was restored in cac1 Δ and cac1 Δ mec1 Δ cells upon deletion of Rad53, the kinase downstream of Mec1. Restoration of silencing to cac1 Δ cells required both Hir1 and Asf1, suggesting that Mec1 counteracts functional sequestration of the Asf1/Hir1 complex by Rad53. Consistent with this idea, the degree of suppression of silencing defects by rad53 alleles correlated with effects on Asf1 binding. Furthermore, deletion of the Dun1 kinase, a downstream target of Rad53, also suppressed the silencing defects of cac1 Δ cells and reduced the levels of Asf1 associated with Rad53 in vivo . Loss of Mec1 and Rad53 did not alter telomere lengths or Asf1 protein levels, nuclear localization, or chromosome association. We conclude that the Mec1 and Dun1 checkpoint kinases regulate the Asf1-Rad53 interaction and therefore affect the activity of the Asf1/Hir complex in vivo .
机译:CAF-1,Hir蛋白和Asf1是组蛋白H3 / H4结合蛋白,对染色质介导的转录沉默很重要。我们探索了芽孢酵母酿酒酵母中这些蛋白质与S-phase / DNA损伤检查点激酶之间的遗传和物理相互作用。尽管缺少检查点激酶Mec1的细胞在端粒基因沉默中未显示缺陷,但同时缺乏CAF-1的Mec1和Cac1亚基的细胞中的沉默显着降低。删除Rac53(Mec1下游的激酶)后,cac1Δ和cac1Δmec1Δ细胞恢复沉默。恢复到cac1Δ细胞的沉默需要Hir1和Asf1,这表明Mec1抵消了Rad53对Asf1 / Hir1复合物的功能隔离。与此想法一致,rad53等位基因对沉默缺陷的抑制程度与对Asf1结合的影响相关。此外,Dun1激酶(Rad53的下游靶标)的缺失在体内也抑制了cac1Δ细胞的沉默缺陷,并降低了与Rad53相关的Asf1水平。 Mec1和Rad53的丢失不会改变端粒长度或Asf1蛋白水平,核定位或染色体缔合。我们得出结论,Mec1和Dun1检查点激酶调节Asf1-Rad53相互作用,因此影响体内Asf1 / Hir复合物的活性。

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