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同源重组对沉默染色质的影响。

Impact of Homologous Recombination on Silent Chromatin in .

机构信息

Department of Molecular and Cell Biology, California Institute for Quantitative Biosciences, University of California at Berkeley, California 94720.

Department of Molecular and Cell Biology, California Institute for Quantitative Biosciences, University of California at Berkeley, California 94720

出版信息

Genetics. 2018 Mar;208(3):1099-1113. doi: 10.1534/genetics.118.300704. Epub 2018 Jan 16.

Abstract

Specialized chromatin domains repress transcription of genes within them and present a barrier to many DNA-protein interactions. Silent chromatin in the budding yeast , akin to heterochromatin of metazoans and plants, inhibits transcription of PolII- and PolIII-transcribed genes, yet somehow grants access to proteins necessary for DNA transactions like replication and homologous recombination. In this study, we adapted a novel assay to detect even transient changes in the dynamics of transcriptional silencing at after it served as a template for homologous recombination. Homologous recombination specifically targeted to via double-strand-break formation at a homologous locus often led to transient loss of transcriptional silencing at Interestingly, many cells could template homology-directed repair at without an obligate loss of silencing, even in recombination events with extensive gene conversion tracts. In a population of cells that experienced silencing loss following recombination, transcription persisted for 2-3 hr after all double-strand breaks were repaired. mRNA levels from cells that experienced recombination-induced silencing loss did not approach the amount of mRNA seen in cells lacking transcriptional silencing. Thus, silencing loss at after homologous recombination was short-lived and limited.

摘要

特化染色质结构域抑制其内部基因的转录,并对许多 DNA-蛋白质相互作用构成阻碍。芽殖酵母中的沉默染色质类似于后生动物和植物的异染色质,可抑制 PolII 和 PolIII 转录基因的转录,但却以某种方式允许复制和同源重组等 DNA 转化所需的蛋白质进入。在这项研究中,我们采用了一种新的检测方法,即使在同源重组作为模板后,也能检测到转录沉默动力学的瞬时变化。通过在同源基因座处形成双链断裂,专门针对 进行同源重组,常常导致 处转录沉默的瞬时丧失。有趣的是,许多细胞可以在不强制沉默丧失的情况下,在同源定向修复 ,即使在具有广泛基因转换区的重组事件中也是如此。在经历重组后沉默丧失的细胞群体中,所有双链断裂修复后,转录仍持续了 2-3 小时。经历重组诱导沉默丧失的细胞中的 mRNA 水平并未接近缺乏转录沉默的细胞中的 mRNA 量。因此,同源重组后 处的沉默丧失是短暂且有限的。

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