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E-GEOD-63444 GSE63444, SRP050033 RNA-seq of coding RNA Saccharomyces cerevisiae

RNA processing proteins regulate Mec1/ATR activation by promoting generation of RPA-coated ssDNA

·发布 2014年11月20日 ·更新 2014年11月28日
12
样本数
12
实验数
实验描述

Eukaryotic cells respond to DNA double-strand breaks (DSBs) by activating a checkpoint that depends on the protein kinases Tel1/ATM and Mec1/ATR. Mec1/ATR is activated by RPA-coated single-stranded DNA (ssDNA), which arises upon nucleolytic degradation (resection) of the DSB. Emerging evidences indicate that RNA processing factors play critical, yet poorly understood, roles in genomic stability. Here, we provide evidence that the Saccharomyces cerevisiae RNA decay factors Xrn1, Rrp6 and Trf4 regulate Mec1/ATR activation by promoting generation of RPA-coated ssDNA. The lack of Xrn1 inhibits ssDNA generation at the DSB by preventing the loading of the MRX complex. By contrast, DSB resection is not affected in the absence of Rrp6 or Trf4, but their lack impairs the recruitment of RPA, and therefore of Mec1, to the DSB. Rrp6 and Trf4 inactivation affects neither Rad51/Rad52 association nor DSB repair by HR, suggesting that full Mec1 activation requires higher amount of RPA-coated ssDNA than HR-mediated repair. Noteworthy, deep transcriptome analyses do not identify common misregulated gene expression that could explain the observed phenotypes. Our results provide a novel link between RNA processing and genome stability. Strand-specific transcriptome analysis of biological replicates of WT cells (JKM139 strain) at T0, or 60 and 240 minutes after HO induction, and of xrn1∆, rrp6∆ and trf4∆ cells at T0.

样本属性
genotype
rrp6D derivative of JKM139, trf4D derivative of JKM139, wild type, xrn1D derivative of JKM139
induction status
240 min after HO induction, 60 min after HO induction, No HO induction
organism
Saccharomyces cerevisiae
strain background
JKM139
实验信息
登记号
E-GEOD-63444
GEO 编号
GSE63444, SRP050033
实验类型
RNA-seq of coding RNA
物种
Saccharomyces cerevisiae
发布日期
2014年11月20日
更新日期
2014年11月28日
提交者
Marc Descrimes、 Daniele Cesena、 Camilla Trovesi、 Antonin Morillon、 Maria P Longhese、 Fabrizio d’Adda di Fagagna、 Antonin Morillon、 Marina Martina、 Maxime Wery、 Nicola Manfrini
分析服务
分析服务

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