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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >HLA-B-associated transcript 3 (Bat3)/Scythe is essential for p300-mediated acetylation of p53.
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HLA-B-associated transcript 3 (Bat3)/Scythe is essential for p300-mediated acetylation of p53.

机译:HLA-B相关转录本3(Bat3)/ Scythe对于p300介导的p53乙酰化至关重要。

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摘要

In response to DNA damage, p53 undergoes post-translational modifications (including acetylation) that are critical for its transcriptional activity. However, the mechanism by which p53 acetylation is regulated is still unclear. Here, we describe an essential role for HLA-B-associated transcript 3 (Bat3)/Scythe in controlling the acetylation of p53 required for DNA damage responses. Depletion of Bat3 from human and mouse cells markedly impairs p53-mediated transactivation of its target genes Puma and p21. Although DNA damage-induced phosphorylation, stabilization, and nuclear accumulation of p53 are not significantly affected by Bat3 depletion, p53 acetylation is almost completely abolished. Bat3 forms a complex with p300, and an increased amount of Bat3 enhances the recruitment of p53 to p300 and facilitates subsequent p53 acetylation. In contrast, Bat3-depleted cells show reduced p53-p300 complex formation and decreased p53 acetylation. Furthermore, consistent with our in vitro findings, thymocytes from Bat3-deficient mice exhibit reduced induction of puma and p21, and are resistant to DNA damage-induced apoptosis in vivo. Our data indicate that Bat3 is a novel and essential regulator of p53-mediated responses to genotoxic stress, and that Bat3 controls DNA damage-induced acetylation of p53.
机译:响应DNA损伤,p53经历了对其转录活性至关重要的翻译后修饰(包括乙酰化)。但是,调节p53乙酰化的机制仍不清楚。在这里,我们描述了HLA-B相关转录本3(Bat3)/ Scythe在控制DNA损伤反应所需的p53乙酰化中的重要作用。人类和小鼠细胞中Bat3的耗竭明显损害p53介导的其靶基因Puma和p21的反式激活。尽管DNA损伤诱导的p53的磷酸化,稳定化和核积累不受Bat3耗竭的影响,但p53的乙酰化几乎被完全消除。 Bat3与p300形成复合物,并且增加的Bat3量可增强p53向p300的募集并促进随后的p53乙酰化。相反,Bat3耗尽的细胞显示出减少的p53-p300复合物形成和减少的p53乙酰化。此外,与我们的体外研究结果一致,来自Bat3缺陷小鼠的胸腺细胞对puma和p21的诱导减少,并且对体内DNA损伤诱导的凋亡具有抵抗力。我们的数据表明,Bat3是p53介导的对遗传毒性应激反应的新型必需调节剂,并且Bat3控制着DNA损伤诱导的p53乙酰化。

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