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Keap1 Recruits Neh2 through Binding to ETGE and DLG Motifs: Characterization of the Two-Site Molecular Recognition Model

机译:Keap1通过结合到ETGE和DLG图案招募Neh2:两站点分子识别模型的表征。

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摘要

The expression of the phase 2 detoxification enzymes and antioxidant proteins is induced at the transcriptional level by Nrf2 and negatively regulated at the posttranslational level by Keap1 through protein-protein interactions with and subsequent proteolysis of Nrf2. We found that the Neh2 domain of Nrf2 is an intrinsically disordered but biologically active regulatory domain containing a 33-residue central α-helix followed by a mini antiparallel β-sheet. Isothermal calorimetry analysis indicated that one Neh2 molecule interacts with two molecules of Keap1 via two binding sites, the stronger binding ETGE motif and the weaker binding DLG motif. Nuclear magnetic resonance titration study showed that these two motifs of the Neh2 domain bind to an overlapping site on the bottom surface of the β-propeller structure of Keap1. In contrast, the central α-helix of the Neh2 domain does not have any observable affinity to Keap1, suggesting that this region may serve as a bridge connecting the two motifs for the association with the two β-propeller structures of a dimer of Keap1. Based on these observations, we propose that Keap1 recruits Nrf2 by the ETGE motif and that the DLG motif of the Neh2 domain locks its lysine-rich central α-helix in a correct position to benefit ubiquitin signaling.
机译:Nrf2在转录水平诱导2期解毒酶和抗氧化剂蛋白的表达,而Keap1通过与Nrf2进行蛋白-蛋白相互作用和随后的蛋白水解作用,在Keap1的翻译后水平上负调控。我们发现,Nrf2的Neh2域是一种内在无序但具有生物活性的调节域,其中包含33个残基的中央α-螺旋,后跟一个微型反平行β-折叠。等温量热分析表明,一个Neh2分子与Keap1的两个分子通过两个结合位点相互作用,即结合较强的ETGE基序和结合较弱的DLG基序。核磁共振滴定研究表明,Neh2结构域的这两个基序与Keap1的β-螺旋结构底面上的重叠位点结合。相反,Neh2结构域的中心α-螺旋与Keap1没有任何可观察到的亲和力,表明该区域可能充当连接两个基序与Keap1二聚体的两个β-螺旋结构缔合的桥梁。基于这些观察结果,我们建议Keap1通过ETGE基序募集Nrf2,而Neh2域的DLG基序将其富含赖氨酸的中央α-螺旋锁定在正确的位置,以利于泛素信号转导。

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