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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Dual neuroprotective pathways of a pro-electrophilic compound via HSF-1-activated heat-shock proteins and Nrf2-activated phase 2 antioxidant response enzymes.
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Dual neuroprotective pathways of a pro-electrophilic compound via HSF-1-activated heat-shock proteins and Nrf2-activated phase 2 antioxidant response enzymes.

机译:亲电化合物通过HSF-1激活的热休克蛋白和Nrf2激活的2期抗氧化反应酶的双重神经保护途径。

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摘要

Activation of the Keap1uclear factor erythroid 2-related factor 2 (Nrf2) pathway and consequent induction of phase 2 antioxidant enzymes is known to afford neuroprotection. Here, we present a series of novel electrophilic compounds that protect neurons via this pathway. Natural products, such as carnosic acid (CA), are present in high amounts in the herbs rosemary and sage as ortho-dihydroquinones, and have attracted particular attention because they are converted by oxidative stress to their active form (ortho-quinone species) that stimulate the Keap1/Nrf2 transcriptional pathway. Once activated, this pathway leads to the production of a series of antioxidant phase 2 enzymes. Thus, such dihydroquinones function as redox-activated 'pro-electrophiles'. Here, we explored the concept that related para-dihydroquinones represent even more effective bioactive pro-electrophiles for the induction of phase 2 enzymes without producing toxic side effects. We synthesized several novel para-hydroquinone-type pro-electrophilic compounds (designated D1 and D2) to analyze their protective mechanism. DNA microarray, PCR, and western blot analyses showed that compound D1 induced expression of heat-shock proteins (HSPs), including HSP70, HSP27, and DnaJ, in addition to phase 2 enzymes such as hemeoxygenase-1 (HO-1), NADP(H) quinine-oxidoreductase1, and the Na(+)-independent cystine/glutamate exchanger (xCT). Treatment with D1 resulted in activation of Nrf2 and heat-shock transcription factor-1 (HSF-1) transcriptional elements, thus inducing phase 2 enzymes and HSPs, respectively. In this manner, D1 protected neuronal cells from both oxidative and endoplasmic reticulum (ER)-related stress. Additionally, D1 suppressed induction of 78 kDa glucose-regulated protein (GRP78), an ER chaperone protein, and inhibited hyperoxidation of peroxiredoxin 2 (PRX2), a molecule that is in its reduced state can protect from oxidative stress. These results suggest that D1 is a novel pro-electrophilic compound that activates both the Nrf2 and HSF-1 pathways, and may thus offer protection from oxidative and ER stress.
机译:已知Keap1 /核因子红系2相关因子2(Nrf2)途径的激活以及随之而来的2期抗氧化剂的诱导可提供神经保护作用。在这里,我们介绍了一系列新的亲电化合物,可通过该途径保护神经元。天然产物,如肌酸(CA),在草药迷迭香和鼠尾草中以邻二氢对苯二酚的形式大量存在,并受到了特别关注,因为它们被氧化应激转化为活性形式(邻苯二酚)。刺激Keap1 / Nrf2转录途径。一旦被激活,该途径将导致一系列抗氧化剂相2酶的产生。因此,这样的二氢醌起氧化还原活化的“亲电子试剂”的作用。在这里,我们探索了一个概念,即相关的对二氢醌代表了更有效的生物活性亲电子试剂,用于诱导2相酶而不会产生毒性副作用。我们合成了几种新颖的对氢醌型亲电化合物(称为D1和D2),以分析其保护机理。 DNA微阵列,PCR和Western印迹分析表明,化合物2诱导了热休克蛋白(HSP)的表达,包括HSP70,HSP27和DnaJ,以及诸如血红素加氧酶-1(HO-1)和NADP等2期酶。 (H)奎宁氧化还原酶1,和Na(+)独立的胱氨酸/谷氨酸交换剂(xCT)。用D1处理可激活Nrf2和热休克转录因子1(HSF-1)转录元件,从而分别诱导2期酶和HSP。以这种方式,D1保护神经元细胞免受氧化和内质网(ER)相关的压力。此外,D1抑制了78 kDa葡萄糖调节蛋白(GRP78)(一种ER伴侣蛋白)的诱导,并抑制了过氧化物酶2(PRX2)的过氧化,处于还原状态的分子可以防止氧化应激。这些结果表明,D1是一种新型的亲电子化合物,可以激活Nrf2和HSF-1途径,因此可以提供抗氧化和内质网应激的保护。

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