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Physiological Significance of Reactive Cysteine Residues of Keap1 in Determining Nrf2 Activity▿

机译:Keap1的反应性半胱氨酸残基对测定Nrf2活性的生理意义▿

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摘要

Keap1 and Cul3 constitute a unique ubiquitin E3 ligase that degrades Nrf2, a key activator of cytoprotective genes. Upon exposure to oxidants/electrophiles, the enzymatic activity of this ligase complex is inhibited and the complex fails to degrade Nrf2, resulting in the transcriptional activation of Nrf2 target genes. Keap1 possesses several reactive cysteine residues that covalently bond with electrophiles in vitro. To clarify the functional significance of each Keap1 cysteine residue under physiological conditions, we established a transgenic complementation rescue model. The transgenic expression of mutant Keap1(C273A) and/or Keap1(C288A) protein in Keap1 null mice failed to reverse constitutive Nrf2 activation, indicating that cysteine residues at positions 273 and 288 are essential for Keap1 to repress Nrf2 activity in vivo. In contrast, Keap1(C151S) retained repressor activity and mice expressing this molecule were viable. Mouse embryonic fibroblasts from Keap1(C151S) transgenic mice displayed decreased expression of Nrf2 target genes both before and after an electrophilic challenge, suggesting that Cys151 is important in facilitating Nrf2 activation. These results demonstrate critical roles of the cysteine residues in vivo in maintaining Keap1 function, such that Nrf2 is repressed under quiescent conditions and active in response to oxidants/electrophiles.
机译:Keap1和Cul3构成独特的泛素E3连接酶,可降解Nrf2(细胞保护性基因的关键激活因子)。暴露于氧化剂/亲电子试剂后,该连接酶复合物的酶活性被抑制,复合物无法降解Nrf2,从而导致Nrf2靶基因的转录激活。 Keap1具有在体外与亲电子试剂共价键合的几个反应性半胱氨酸残基。为了阐明每个Keap1半胱氨酸残基在生理条件下的功能意义,我们建立了转基因互补拯救模型。 Keap1 null小鼠中突变的Keap1(C273A)和/或Keap1(C288A)蛋白的转基因表达未能逆转Nrf2组成型激活,表明在273和288位的半胱氨酸残基对于Keap1抑制体内Nrf2活性至关重要。相反,Keap1(C151S)保留了阻遏物活性,表达该分子的小鼠是可行的。来自Keap1(C151S)转基因小鼠的小鼠胚胎成纤维细胞在亲电攻击之前和之后均显示Nrf2靶基因的表达降低,这表明Cys151在促进Nrf2激活中很重要。这些结果证明了体内半胱氨酸残基在维持Keap1功能中的关键作用,从而使Nrf2在静止条件下受到抑制,并对氧化剂/亲电试剂具有活性。

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