首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Transcription factor TAFII250 phosphorylates the acidic domain of Mdm2 through recruitment of protein kinase CK2.
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Transcription factor TAFII250 phosphorylates the acidic domain of Mdm2 through recruitment of protein kinase CK2.

机译:转录因子TAFII250通过募集蛋白激酶CK2使Mdm2的酸性结构域磷酸化。

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摘要

Induction and activation of the p53 tumour suppressor protein occurs in response to a number of cellular stresses, including disruption of RNA polymerase II-mediated transcription. Both p53 itself and its principle negative regulator, the E3 ubiquitin ligase Mdm2, are substrates for phosphorylation by the protein kinase CK2 in vitro. CK2 phosphorylates Mdm2 within its central acidic domain, a region that is critical for making a second point of contact with p53 and mediating p53 ubiquitylation and turnover. Additionally, there is evidence that CK2 interacts with, and regulates, both p53 and Mdm2 within the cell but the molecular mechanisms through which CK2-mediated regulation of the p53 response can occur are only poorly understood. Previously, we showed that the basal transcription factor TAFII250, a critical component of TFIID, can interact with Mdm2 and promote the association of the Mdm2 acidic domain with p53. In the present study, we show that immunoprecipitates of TAFII250, either from mammalian cell extracts or from baculovirus-infected cells expressing elevated levels of HA-tagged TAFII250, can phosphorylate Mdm2 in vitro within its acidic domain. We show that CK2 is tightly associated with TAFII250 and is the principal activity responsible for TAFII250-mediated phosphorylation of Mdm2. Our data fit with recent observations that phosphorylation of the acidic domain of Mdm2 stimulates its association with p53 and are consistent with a model in which recruitment of CK2 by TAFII250 may play a contributory role in the maintenance of Mdm2 phosphorylation and function.
机译:p53肿瘤抑制蛋白的诱导和激活是响应许多细胞应激而发生的,包括破坏RNA聚合酶II介导的转录。 p53本身及其主要的负调节剂E3泛素连接酶Mdm2都是体外蛋白激酶CK2磷酸化的底物。 CK2在其中央酸性区域内磷酸化Mdm2,该区域对于与p53形成第二个接触点并介导p53泛素化和转换至关重要。另外,有证据表明CK2与细胞内的p53和Mdm2相互作用并对其进行调节,但是对CK2介导的对p53反应调节的分子机制了解甚少。以前,我们表明基础转录因子TAFII250是TFIID的关键组成部分,可以与Mdm2相互作用并促进Mdm2酸性域与p53的结合。在本研究中,我们显示TAFII250的免疫沉淀物,无论是来自哺乳动物细胞提取物还是表达表达HA标签的TAFII250的水平增加的杆状病毒感染的细胞,都可以在其酸性结构域内使Mdm2磷酸化。我们显示CK2与TAFII250紧密相关,并且是负责TAFII250介导的Mdm2磷酸化的主要活性。我们的数据与最近的观察结果相符,即Mdm2酸性结构域的磷酸化刺激了其与p53的缔合,并且与其中TAFII250招募CK2可能在维持Mdm2磷酸化和功能中起重要作用的模型相一致。

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