Kobayashi Akira, Kang Moon-Il, Okawa Hiromi, Ohtsuji Makiko, Zenke Yukari, Chiba Tomoki, Igarashi Kazuhiko, Yamamoto Masayuki
Center for Tsukuba Advanced Research Alliance, Institute of Basic Medical Sciences, and JST-ERATO Environmental Response Project, University of Tsukuba, Tsukuba 305-8575, Japan.
Mol Cell Biol. 2004 Aug;24(16):7130-9. doi: 10.1128/MCB.24.16.7130-7139.2004.
Transcription factor Nrf2 is a major regulator of genes encoding phase 2 detoxifying enzymes and antioxidant stress proteins in response to electrophilic agents and oxidative stress. In the absence of such stimuli, Nrf2 is inactive owing to its cytoplasmic retention by Keap1 and rapid degradation through the proteasome system. We examined the contribution of Keap1 to the rapid turnover of Nrf2 (half-life of less than 20 min) and found that a direct association between Keap1 and Nrf2 is required for Nrf2 degradation. In a series of domain function analyses of Keap1, we found that both the BTB and intervening-region (IVR) domains are crucial for Nrf2 degradation, implying that these two domains act to recruit ubiquitin-proteasome factors. Indeed, Cullin 3 (Cul3), a subunit of the E3 ligase complex, was found to interact specifically with Keap1 in vivo. Keap1 associates with the N-terminal region of Cul3 through the IVR domain and promotes the ubiquitination of Nrf2 in cooperation with the Cul3-Roc1 complex. These results thus provide solid evidence that Keap1 functions as an adaptor of Cul3-based E3 ligase. To our knowledge, Nrf2 and Keap1 are the first reported mammalian substrate and adaptor, respectively, of the Cul3-based E3 ligase system.
转录因子Nrf2是编码II期解毒酶和抗氧化应激蛋白的基因的主要调节因子,可响应亲电试剂和氧化应激。在没有此类刺激的情况下,Nrf2由于被Keap1滞留于细胞质中并通过蛋白酶体系统快速降解而处于无活性状态。我们研究了Keap1对Nrf2快速周转(半衰期小于20分钟)的作用,发现Keap1与Nrf2的直接结合是Nrf2降解所必需的。在对Keap1进行的一系列结构域功能分析中,我们发现BTB结构域和中间区域(IVR)结构域对Nrf2降解都至关重要,这意味着这两个结构域起到募集泛素-蛋白酶体因子的作用。实际上,E3连接酶复合物的一个亚基Cullin 3(Cul3)在体内被发现与Keap1特异性相互作用。Keap1通过IVR结构域与Cul3的N端区域结合,并与Cul3-Roc1复合物协同促进Nrf2的泛素化。因此,这些结果提供了确凿的证据,证明Keap1作为基于Cul3的E3连接酶的衔接蛋白发挥作用。据我们所知,Nrf2和Keap1分别是首次报道的基于Cul3的E3连接酶系统的哺乳动物底物和衔接蛋白。