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DNA damage-induced replication stress results in PA200-proteasome-mediated degradation of acetylated histones

机译:DNA损伤诱导的复制应力导致PA200-蛋白酶体介导的乙酰化组蛋白的降解

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摘要

Histone acetylation influences protein interactions and chromatin accessibility and plays an important role in the regulation of transcription, replication, and DNA repair. Conversely, DNA damage affects these crucial cellular processes and induces changes in histone acetylation. However, a comprehensive overview of the effects of DNA damage on the histone acetylation landscape is currently lacking. To quantify changes in histone acetylation, we developed an unbiased quantitative mass spectrometry analysis on affinity-purified acetylated histone peptides, generated by differential parallel proteolysis. We identify a large number of histone acetylation sites and observe an overall reduction of acetylated histone residues in response to DNA damage, indicative of a histone-wide loss of acetyl modifications. This decrease is mainly caused by DNA damage-induced replication stress coupled to specific proteasome-dependent loss of acetylated histones. Strikingly, this degradation of acetylated histones is independent of ubiquitylation but requires the PA200-proteasome activator, a complex that specifically targets acetylated histones for degradation. The uncovered replication stress-induced degradation of acetylated histones represents an important chromatin-modifying response to cope with replication stress.
机译:组蛋白乙酰化影响蛋白质相互作用和染色质可接受性,并在转录,复制和DNA修复的调节中起着重要作用。相反,DNA损伤会影响这些关键的细胞过程,并诱导组蛋白乙酰化的变化。然而,目前缺乏DNA损伤对组蛋白乙酰化景观的效果的全面概述。为了量化组蛋白乙酰化的变化,我们开发了通过差分平行蛋白水解产生的亲和纯化的乙酰化组蛋白肽的无偏的定量质谱分析。我们鉴定大量组蛋白乙酰化位点,并响应DNA损伤,观察乙酰化组蛋白残基的总体还原,这表明乙酰末端的组蛋白范围丧失。这种降低主要是由DNA损伤诱导的复制应激引起的,耦合到特异性蛋白酶体依赖性的乙酰化组蛋白的损失。尖锐的是,这种乙酰化的组蛋白的降解与泛菌素无关,而是需要PA200-蛋白酶体活化剂,该络合物特异性地靶向乙酰化组蛋白以进行降解。甲基化组蛋白的未覆盖的复制应力诱导的降解代表了对应对复制应力的应对的重要染色质调节响应。

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