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Distinct Cysteine Residues in Keap1 Are Required for Keap1-Dependent Ubiquitination of Nrf2 and for Stabilization of Nrf2 by Chemopreventive Agents and Oxidative Stress

机译:Keap1中不同的半胱氨酸残基对于Keap1依赖的Nrf2泛素化以及通过化学预防剂和氧化应激稳定Nrf2是必需的

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摘要

A common feature of diverse chemopreventive agents is the ability to activate expression of a genetic program that protects cells from reactive chemical species that, if left unchecked, would cause mutagenic DNA damage. The bZIP transcription factor Nrf2 has emerged as a key regulator of this cancer-preventive genetic program. Nrf2 is normally sequestered in the cytoplasm by a protein known as Keap1. Chemopreventive agents allow Nrf2 to escape from Keap1-mediated repression, although the molecular mechanism(s) responsible for activation of Nrf2 is not understood. In this report, we demonstrate that Keap1 does not passively sequester Nrf2 in the cytoplasm but actively targets Nrf2 for ubiquitination and degradation by the proteosome under basal culture conditions. We have identified two critical cysteine residues in Keap1, C273 and C288, that are required for Keap1-dependent ubiquitination of Nrf2. Both sulforaphane, a chemopreventive isothiocyanate, and oxidative stress enable Nrf2 to escape Keap1-dependent degradation, leading to stabilization of Nrf2, increased nuclear localization of Nrf2, and activation of Nrf2-dependent cancer-protective genes. We have identified a third cysteine residue in Keap1, C151, that is uniquely required for inhibition of Keap1-dependent degradation of Nrf2 by sulforaphane and oxidative stress. This cysteine residue is also required for a novel posttranslational modification to Keap1 that is induced by oxidative stress. We propose that Keap1 is a component of a novel E3 ubiquitin ligase complex that is specifically targeted for inhibition by both chemopreventive agents and oxidative stress.
机译:各种化学预防剂的共同特点是能够激活遗传程序的表达,这种程序可以保护细胞免受反应性化学物质的伤害,如果不加以检查,会导致诱变性DNA损伤。 bZIP转录因子Nrf2已成为该癌症预防基因程序的关键调节剂。 Nrf2通常被称为Keap1的蛋白质隔离在细胞质中。化学预防剂可以使Nrf2从Keap1介导的阻遏中逃逸,尽管尚不清楚引起Nrf2活化的分子机制。在此报告中,我们证明Keap1不会在细胞质中被动隔离Nrf2,而是在基础培养条件下主动靶向Nrf2进行蛋白体的泛素化和降解。我们已经确定了Keap1,C273和C288中的两个关键半胱氨酸残基,这些残基是依赖Keap1的Nrf2泛素化的。萝卜硫素(一种化学预防性的异硫氰酸盐)和氧化应激都使Nrf2能够逃避Keap1依赖性降解,从而导致Nrf2稳定,Nrf2的核定位增加以及Nrf2依赖性癌症保护基因的激活。我们已经确定了Keap1,C151中的第三个半胱氨酸残基,这是抑制萝卜硫素和氧化应激抑制Keap1依赖的Nrf2降解的唯一方法。该半胱氨酸残基也是由氧化应激诱导的Keap1的新型翻译后修饰所必需的。我们提出,Keap1是新型E3泛素连接酶复合物的组成部分,该复合物专门针对化学预防剂和氧化应激的抑制。

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