首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Identification of two residues in MCM5 critical for the assembly of MCM complexes and Stat1-mediated transcription activation in response to IFN-γ
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Identification of two residues in MCM5 critical for the assembly of MCM complexes and Stat1-mediated transcription activation in response to IFN-γ

机译:鉴定MCM5中的两个残基这些残基对于MCM复合物的组装和Stat1介导的转录激活响应IFN-γ至关重要

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摘要

In response to IFN-γ, the latent cytoplasmic Stat1 (signal transducer and activator of transcription) proteins translocate into the nucleus and activate transcription. We showed previously that Stat1 recruits a group of nuclear proteins, among them MCM5 (minichromosome maintenance) and MCM3, for transcription activation. MCM5 directly interacts with the transcription activation domain (TAD) of Stat1 and enhances Stat1-mediated transcription activation. In this report, we identified two specific residues (R732, K734) in MCM5 that are required for the direct interaction between Stat1 and MCM5 both in vitro and in vivo. MCM5 containing mutations of R732/K734 did not enhance Stat1-mediated transcription activation in response to IFN-γ. In addition, it also failed to form complexes with other MCM proteins in vivo, suggesting that these two residues may be important for an interaction domain in MCM5. Furthermore, MCM5 bearing mutations in its ATPase and helicase domains did not enhance Stat1 activity. In vitro binding assays indicate that MCM3 does not interact directly with Stat1, suggesting that the presence of MCM3 in the group of Stat1TAD-interacting proteins is due to the association of MCM3 with MCM5. Finally, gel filtration analyses of nuclear extracts from INF-γ-treated cells demonstrate that there is a MCM5/3 subcomplex coeluting with Stat1. Together, these results strongly suggest that Stat1 recruits a MCM5/3 subcomplex through direct interaction with MCM5 in the process of IFN-γ-induced gene activation.
机译:响应IFN-γ,潜在的胞质Stat1(信号转导和转录激活剂)蛋白易位进入细胞核并激活转录。我们以前已经证明Stat1募集一组核蛋白,其中包括MCM5(微染色体维持)和MCM3,以进行转录激活。 MCM5直接与Stat1的转录激活域(TAD)相互作用,并增强Stat1介导的转录激活。在这份报告中,我们在MCM5中鉴定了两个特定的残基(R732,K734),这是Stat1和MCM5在体内和体外之间直接相互作用所必需的。包含R732 / K734的突变的MCM5不能增强Stat1介导的转录激活,以响应IFN-γ。此外,它也未能在体内与其他MCM蛋白形成复合物,表明这两个残基可能对MCM5中的相互作用域很重要。此外,在其ATPase和解旋酶结构域中携带突变的MCM5不会增强Stat1活性。体外结合试验表明MCM3不直接与Stat1相互作用,提示 Stat1TAD相互作用蛋白组中MCM3的存在 是由于MCM3与MCM5相关联。最后,凝胶过滤 INF-γ处理的细胞核提取物的分析表明 有一个与Stat1共洗脱的MCM5 / 3亚复合物。一起, 这些结果强烈表明Stat1募集了MCM5 / 3 通过在与MCM5的直接交互过程中实现亚复杂 IFN-γ诱导的基因激活。

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