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The Yeast DNA Damage Checkpoint Kinase Rad53 Targets the Exoribonuclease Xrn1

机译:酵母DNA损伤检查点激酶Rad53靶向外切核酸酶Xrn1

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摘要

The highly conserved DNA damage response (DDR) pathway monitors the genomic integrity of the cell and protects against genotoxic stresses. The apical kinases, Mec1 and Tel1 (ATR and ATM in human, respectively), initiate the DNA damage signaling cascade through the effector kinases, Rad53 and Chk1, to regulate a variety of cellular processes including cell cycle progression, DNA damage repair, chromatin remodeling, and transcription. The DDR also regulates other cellular pathways, but direct substrates and mechanisms are still lacking. Using a mass spectrometry-based phosphoproteomic screen in Saccharomyces cerevisiae, we identified novel targets of Rad53, many of which are proteins that are involved in RNA metabolism. Of the 33 novel substrates identified, we verified that 12 are directly phosphorylated by Rad53 in vitro: Xrn1, Gcd11, Rps7b, Ded1, Cho2, Pus1, Hst1, Srv2, Set3, Snu23, Alb1, and Scp160. We further characterized Xrn1, a highly conserved 5′ exoribonuclease that functions in RNA degradation and the most enriched in our phosphoproteomics screen. Phosphorylation of Xrn1 by Rad53 does not appear to affect Xrn1’s intrinsic nuclease activity in vitro, but may affect its activity or specificity in vivo.
机译:高度保守的DNA损伤反应(DDR)途径可监测细胞的基因组完整性,并防止遗传毒性。顶端激酶Mec1和Tel1(分别为人类中的ATR和ATM)通过效应子激酶Rad53和Chk1启动DNA损伤信号传导级联反应,以调节多种细胞过程,包括细胞周期进程,DNA损伤修复,染色质重塑和转录。 DDR也调节其他细胞途径,但仍然缺乏直接的底物和机制。在酿酒酵母中使用基于质谱的磷酸化蛋白质组学筛选,我们确定了Rad53的新目标,其中许多是涉及RNA代谢的蛋白质。在确定的33种新底物中,我们验证了Rad53在体外直接磷酸化了12种:Xrn1,Gcd11,Rps7b,Ded1,Cho2,Pus1,Hst1,Srv2,Set3,Snu23,Alb1和Scp160。我们进一步表征了Xrn1,这是一种高度保守的5'核糖核酸外切酶,可在RNA降解中起作用,并且在我们的磷酸化蛋白质组学筛选中最丰富。 Rad53对Xrn1的磷酸化作用似乎并不影响Xrn1在体外的固有核酸酶活性,但可能会影响其在体内的活性或特异性。

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