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首页> 外文期刊>Molecules and cells >Genome-wide screen of human bromodomain-containing proteins identifies Cecr2 as a novel DNA damage response protein
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Genome-wide screen of human bromodomain-containing proteins identifies Cecr2 as a novel DNA damage response protein

机译:人类含溴结构域蛋白的全基因组筛选将Cecr2鉴定为新型DNA损伤反应蛋白

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摘要

The formation of γ-H2AX foci after DNA double strand breaks (DSBs) is crucial for the cellular response to this lethal DNA damage. We previously have shown that BRG1, a chromatin remodeling enzyme, facilitates DSB repair by stimulating γ-H2AX formation, and this function of BRG1 requires the binding of BRGI to acetylated histone H3 on γ-H2AX-containing nucleosomes using its bromodomain (BRD), a protein module that specifically recognizes acetyl-Lys moieties. We also have shown that the BRD of BRG1, when ectopically expressed in cells, functions as a dominant negative inhibitor of the BRG1 activity to stimulate γ-H2AX and DSB repair. Here, we found that BRDs from a select group of proteins have no such activity, suggesting that the γ-H2AX inhibition activity of BRG1 BRD is specific. This finding led us to search for more BRDs that exhibit γ-H2AX inhibition activity in the hope of finding additional BRD-containing proteins involved in DNA damage responses. We screened a total of 52 individual BRDs present in 38 human BRD-containing proteins, comprising 93% of all human BRDs. We identified the BRD of cat eye syndrome chromosome region candidate 2 (Cecr2), which recently was shown to form a novel chromatin remodeling complex with unknown cellular functions, as having a strong γ-H2AX inhibition activity. This activity of Cecr2 BRD is specific because it depends on the chromatin binding affinity of Cecr2 BRD. Small interfering RNA knockdown experiments showed that Cecr2 is important for γ-H2AX formation and DSB repair. Therefore, our genomewide screen identifies Cecr2 as a novel DNA damage response protein.
机译:DNA双链断裂(DSB)后,γ-H2AX灶的形成对于细胞对这种致命DNA损伤的反应至关重要。先前我们已经证明,染色质重塑酶BRG1通过刺激γ-H2AX的形成来促进DSB修复,而BRG1的这一功能需要使用其溴结构域(BRD)将BRGI与含γ-H2AX的核小体上的乙酰化组蛋白H3结合,专门识别乙酰基赖氨酸部分的蛋白质模块。我们还显示,BRG1的BRD在细胞中异位表达时,起BRG1活性的主要负抑制剂的作用,以刺激γ-H2AX和DSB修复。在这里,我们发现来自选定蛋白质组的BRD没有这种活性,这表明BRG1 BRD的γ-H2AX抑制活性是特异的。这一发现使我们寻找更多表现出γ-H2AX抑制活性的BRD,希望找到其他与DNA损伤反应有关的含BRD的蛋白质。我们筛选了38种含人BRD的蛋白质中存在的52种单独BRD,占所有人BRD的93%。我们确定了猫眼综合征染色体区域候选对象2(Cecr2)的BRD,最近发现该BRD具有强大的γ-H2AX抑制活性,可形成具有未知细胞功能的新型染色质重塑复合物。 Cecr2 BRD的这种活性是特异性的,因为它取决于Cecr2 BRD的染色质结合亲和力。小型干扰RNA敲低实验表明Cecr2对γ-H2AX的形成和DSB的修复很重要。因此,我们的全基因组筛选将Cecr2鉴定为一种新型的DNA损伤反应蛋白。

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