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Supramolecular Complex Formation between Rad6 and Proteins of the p53 Pathway during DNA Damage-Induced Response

机译:DNA损伤诱导的应答过程中Rad6与p53途径蛋白之间的超分子复合物形成

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摘要

The HR6A and -B genes, homologues of the yeast Rad6 gene, encode ubiquitin-conjugating enzymes that are required for postreplication repair of DNA and damage-induced mutagenesis. Using surface plasmon resonance, we show here that HR6 protein (referred as Rad6) physically interacts with p53. Analysis of proteins coimmunoprecipitated with Rad6 antibody from metabolically labeled normal MCF10A human breast epithelial cells not only confirmed Rad6-p53 interactions in vivo but also demonstrated for the first time that exposure of MCF10A cells to cisplatin or adriamycin (ADR) induces recruitment of p14ARF into Rad6-p53 complexes. Further analysis of ADR-induced p53 response showed that stable Rad6-p53-p14ARF complex formation is associated with a parallel increase and decrease in monoubiquitinated and polyubiquitinated p53, respectively, and arrest in G2/M phase of the cell cycle. Interestingly, the ADR-induced suppression of p53 polyubiquitination correlated with a corresponding decline in intact Hdm2 protein levels. Treatment of MCF10A cells with MG132, a 26S proteasome inhibitor, effectively stabilized monoubiquitinated p53 and rescued ADR-induced downregulation of Hdm2. These data suggest that ADR-induced degradation of Hdm2 occurs via the ubiquitin-proteasome pathway. Rad6 is present in both the cytoplasmic and nuclear compartments of normal MCF10A cells, although in response to DNA damage it is predominantly found in the nucleus colocalizing with ubiquitinated p53, whereas Hdm2 is undetectable. Consistent with in vivo data, results from in vitro ubiquitination assays show that Rad6 mediates addition of one (mono-) to two (multimono-) ubiquitin molecules on p53 and that inclusion of Mdm2 is essential for its polyubiquitination. The data presented in the present study suggest that Rad6-p53-p14ARF complex formation and p53 ubiquitin modification are important damage-induced responses that perhaps determine the fidelity of DNA postreplication repair.
机译:酵母Rad6基因的同源物HR6A和-B基因编码泛素结合酶,这些酶是DNA复制后修复和损伤诱导诱变所必需的。使用表面等离子体共振,我们在这里显示HR6蛋白(称为Rad6)与p53发生物理相互作用。代谢标记的正常MCF10A人乳腺上皮细胞中与Rad6抗体共免疫沉淀的蛋白质的分析不仅证实了Rad6-p53在体内的相互作用,而且首次证明了MCF10A细胞暴露于顺铂或阿霉素(ADR)会诱导p14ARF募集到Rad6中-p53复合体。对ADR诱导的p53反应的进一步分析表明,稳定的Rad6-p53-p14ARF复合物形成与单泛素化和多泛素化p53的平行增加和减少有关,并阻滞于细胞周期的G2 / M期。有趣的是,ADR诱导的p53多泛素化抑制与完整Hdm2蛋白水平相应下降有关。用26S蛋白酶体抑制剂MG132处理MCF10A细胞可有效稳定单泛素化的p53,并挽救ADR诱导的Hdm2下调。这些数据表明ADR诱导的Hdm2降解是通过泛素-蛋白酶体途径发生的。 Rad6存在于正常MCF10A细胞的细胞质和核区室中,尽管它主要是在对DNA损伤的反应中与泛素化的p53共定位于细胞核中,而Hdm2却无法检测到。与体内数据一致,体外泛素化测定的结果表明,Rad6介导p53上一个(单-)泛素到两个(多单-)泛素分子的添加,并且Mdm2的包含对于其多泛素化至关重要。本研究中提供的数据表明,Rad6-p53-p14ARF复合物的形成和p53泛素修饰是重要的损伤诱导反应,可能决定了DNA复制后修复的保真度。

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