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Nuclear Oncoprotein Prothymosin α Is a Partner of Keap1: Implications for Expression of Oxidative Stress-Protecting Genes

机译:核癌蛋白原胸腺肽α是Keap1的伴侣:氧化应激保护基因表达的含义。

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摘要

Animal cells counteract oxidative stress and electrophilic attack through coordinated expression of a set of detoxifying and antioxidant enzyme genes mediated by transcription factor Nrf2. In unstressed cells, Nrf2 appears to be sequestered in the cytoplasm via association with an inhibitor protein, Keap1. Here, by using the yeast two-hybrid screen, human Keap1 has been identified as a partner of the nuclear protein prothymosin α. The in vivo and in vitro data indicated that the prothymosin α-Keap1 interaction is direct, highly specific, and functionally relevant. Furthermore, we showed that Keap1 is a nuclear-cytoplasmic shuttling protein equipped with a nuclear export signal that is important for its inhibitory action. Prothymosin α was able to liberate Nrf2 from the Nrf2-Keap1 inhibitory complex in vitro through competition with Nrf2 for binding to the same domain of Keap1. In vivo, the level of Nrf2-dependent transcription was correlated with the intracellular level of prothymosin α by using prothymosin α overproduction and mRNA interference approaches. Our data attribute to prothymosin α the role of intranuclear dissociator of the Nrf2-Keap1 complex, thus revealing a novel function for prothymosin α and adding a new dimension to the molecular mechanisms underlying expression of oxidative stress-protecting genes.
机译:动物细胞通过协调表达由转录因子Nrf2介导的一组排毒和抗氧化酶基因来对抗氧化应激和亲电子攻击。在不受压力的细胞中,Nrf2似乎通过与抑制剂蛋白Keap1缔合而被隔离在细胞质中。在这里,通过使用酵母双杂交筛选,已确定人Keap1是核蛋白原胸腺肽α的伴侣。体内和体外数据表明,前胸腺素α-Keap1相互作用是直接,高度特异性和功能相关的。此外,我们显示Keap1是一种核细胞质穿梭蛋白,配有一个核输出信号,该信号对其抑制作用很重要。胸腺肽原素能够通过与Nrf2竞争与Keap1的同一域结合而在体外从Nrf2-Keap1抑制复合物中释放Nrf2。在体内,通过使用过量的胸腺肽α和mRNA干扰方法,Nrf2依赖性转录水平与胸腺肽α的细胞内水平相关。我们的数据归因于胸腺肽α的Nrf2-Keap1复杂的核内解离者的作用,从而揭示了胸腺肽α的新功能,并增加了氧化应激保护基因表达的分子机制的新维度。

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