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The role of the catecholic and the electrophilic moieties of caffeic acid in Nrf2/Keap1 pathway activation in ovarian carcinoma cell lines

机译:咖啡酸的儿茶酸和亲电子部分在卵巢癌细胞系Nrf2 / Keap1途径激活中的作用

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摘要

In recent years, numerous studies have demonstrated the health benefits of polyphenols. A major portion of polyphenols in western diet are derived from coffee, which is one of the most consumed beverages in the world.It has been shown that many polyphenols gain their beneficial properties (e.g. cancer prevention) through the activation of the Nrf2/Keap1 pathway as well as their direct antioxidant activity. However, activation of Nrf2 in cancer cells might lead to resistance towards therapy through induction of phase II enzymes.In the present work we hypothesize that caffeic acid (CA), a coffee polyphenol, might act as an electrophile in addition to its nucleophilic properties and is capable of inducing the Nrf2/EpRE pathway in cancer cells.The results indicate that CA induces Nrf2 translocation into the nucleus and consequently its transcription. It has been demonstrated that generated hydrogen peroxide is involved in the induction process. It has also been found that this process is induced predominantly via the double bond in CA (Michael acceptor). However, surprisingly the presence of both nucleophilic and electrophilic moieties in CA resulted in a synergetic activation of Nrf2 and phase II enzymes.We also found that CA possesses a dual activity, although inducing GSTP1 and GSR, it inhibiting their enzymatic activity.In conclusion, the mechanism of induction of Nrf2 pathway and phase II enzymes by CA has been elucidated. The electrophilic moiety in CA is essential for the oxidation of the Keap1 protein. It should be noted that while the nucleophilic moiety (the catechol/quinone moiety) can provide scavenging ability, it cannot contribute directly to Nrf2 induction. It was found that this process may be induced by H2O2 produced by the catechol group.On the whole, it appears that CA might play a major role in the cancer cells by enhancing their resistance to treatment.
机译:近年来,大量研究证明了多酚对健康的益处。西方饮食中的多酚主要来自咖啡,而咖啡是世界上消费最多的饮料之一。研究表明,许多多酚通过激活Nrf2 / Keap1途径获得其有益的特性(例如,预防癌症)。以及它们的直接抗氧化活性。然而,癌细胞中Nrf2的激活可能会通过II期酶的诱导而导致对治疗的抵抗力。能够诱导癌细胞中的Nrf2 / EpRE途径。结果表明,CA诱导Nrf2易位到细胞核中,并因此转录。已经证明,生成的过氧化氢参与诱导过程。还发现该过程主要是通过CA(迈克尔受体)中的双键诱导的。然而,令人惊讶的是,CA中亲核和亲电子部分的存在导致Nrf2和II期酶的协同激活。我们还发现CA具有双重活性,尽管诱导GSTP1和GSR抑制了它们的酶促活性。阐明了CA诱导Nrf2途径和II期酶的机制。 CA中的亲电子部分对于Keap1蛋白的氧化至关重要。应当指出,尽管亲核部分(邻苯二酚/醌部分)可以提供清除能力,但它不能直接促进Nrf2的诱导。结果发现,该过程可能是由儿茶酚基团产生的H2O2引起的。总体而言,CA可能通过增强癌细胞的抗药性而在癌细胞中起主要作用。

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