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Structural analysis of the complex of Keap1 with a prothymosin α peptide

机译:Keap1与前胸腺素α肽复合物的结构分析

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摘要

The Nrf2 transcription factor, which plays important roles in oxidative and xenobiotic stress, is negatively regulated by the cytoplasmic repressor Keap1. The β-propeller/Kelch domain of Keap1, which is formed by the double-glycine repeat and C-terminal region domains (Keap1-DC), interacts directly with the Neh2 domain of Nrf2. The nuclear oncoprotein prothymosin α (ProTα) also interacts directly with Keap1 and may play a role in the dissociation of the Keap1–Nrf2 complex. The structure of Keap1-DC complexed with a ProTα peptide (amino acids 39–54) has been determined at 1.9 Å resolution. The Keap1-bound ProTα peptide possesses a hairpin conformation and binds to the Keap1 protein at the bottom region of the β-propeller domain. Complex formation occurs as a consequence of their complementary electrostatic interactions. A comparison of the present structure with recently reported Keap1-DC complex structures revealed that the DLG and ETGE motifs of the Neh2 domain of Nrf2 and the ProTα peptide bind to Keap1 in a similar manner but with different binding potencies.
机译:Nrf2转录因子,在氧化和外源性应激中起重要作用,由细胞质阻遏物Keap1负调控。由双甘氨酸重复区和C末端区域域(Keap1-DC)形成的Keap1的β螺旋桨/凯尔奇域直接与Nrf2的Neh2域相互作用。核癌蛋白前胸腺素α(ProTα)也直接与Keap1相互作用,并可能在Keap1-Nrf2复合体的解离中起作用。已经确定了与ProTα肽(氨基酸39-54)复合的Keap1-DC的结构,分辨率为1.9Å。与Keap1结合的ProTα肽具有发夹结构,并与β-螺旋桨结构域底部的Keap1蛋白结合。由于它们互补的静电相互作用,形成了络合物。本结构与最近报道的Keap1-DC复杂结构的比较表明,Nrf2的Neh2结构域的DLG和ETGE基序以及ProTα肽以相似的方式结合Keap1,但结合力不同。

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