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Inaugural Article: Symmetry asymmetry and kinetics of silencing establishment in Saccharomyces cerevisiae revealed by single-cell optical assays

机译:就职文章:单细胞光学测定揭示酿酒酵母中沉默建立的对称性不对称性和动力学

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摘要

In Saccharomyces cerevisiae, silent chromatin inhibits the expression of genes at the HML, HMR, and telomeric loci. When silent chromatin forms de novo, the rate of its establishment is influenced by different chromatin states. In particular, loss of the enzyme Dot1, an H3 K79 methyltransferase, leads to rapid silencing establishment. We tested whether silencing establishment was antagonized by H3 K79 methylation or by the Dot1 protein itself competing with Sir3 for binding sites on nucleosomes. To do so, we monitored fluorescence activity in cells containing a GFP gene within the HML locus during silencing establishment in a series of dot1 and histone mutant backgrounds. Silencing establishment rate was correlated with Dot1’s enzymatic function rather than with the Dot1 protein itself. In addition, histone mutants that mimicked the conformation of unmethylated H3 K79 increased the rate of silencing establishment, indicating that the H3 K79 residue affected silencing independently of Dot1 abundance. Using fluorophore-based reporters, we confirmed that mother and daughter cells often silence in concert, but in instances where asymmetric silencing occurs, daughter cells established silencing earlier than their mothers. This noninvasive technique enabled us to demonstrate an asymmetry in silencing establishment of a key regulatory locus controlling cell fate.
机译:在酿酒酵母中,沉默染色质抑制HML,HMR和端粒基因座上基因的表达。从头形成沉默染色质时,其建立速度受不同染色质状态的影响。特别是,H3 K79甲基转移酶Dot1酶的丢失导致快速沉默。我们测试了沉默建立是否被H3 K79甲基化所拮抗,还是被与Sir3竞争核小体结合位点的Dot1蛋白本身所拮抗。为此,我们在一系列点1和组蛋白突变体背景沉默建立过程中,监测了HML基因座内含有GFP基因的细胞的荧光活性。沉默建立率与Dot1的酶功能有关,而不与Dot1蛋白本身有关。此外,模仿未甲基化的H3 K79构象的组蛋白突变体增加了沉默建立的速率,表明H3 K79残基独立于Dot1丰度而影响沉默。使用基于荧光团的报道基因,我们确认母细胞和子细胞通常会一致沉默,但是在发生不对称沉默的情况下,子细胞比母细胞更早建立沉默。这种非侵入性技术使我们能够证明在控制细胞命运的关键调控基因座沉默中的不对称性。

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