摘要
氧化应激反应对恶性细胞至关重要。它发挥着双重作用,一方面帮助癌细胞生存和增殖,另一方面也会导致细胞凋亡和细胞死亡。氧化应激反应的特征是一系列转录因子(OSRts;氧化应激反应转录因子)。在这篇通讯中,我们回顾了OSRts的作用,特别是NRF2和p53以及其他调节应答的转录因子。我们讨论了氧化应激反应的等级性以及如何控制“生或死”
关键词: 氧化应激,癌症,多酚,转录控制,NRF2, p53。
Current Medicinal Chemistry
Title:Transcriptional Control of the Oxidative Stress Response and Implications of Using Plant Derived Molecules for Therapeutic Interventions in Cancer
Volume: 28 Issue: 41
关键词: 氧化应激,癌症,多酚,转录控制,NRF2, p53。
摘要: The oxidative stress response is critical for malignant cells. It plays a dual role by helping cancer cells survive and proliferate but also causing apoptosis and apoptosis-- like cell death. The oxidative stress response is characterized by tight regulation of gene expression by a series of transcription factors (OSRts; oxidative stress response transcription factors). In this communication, we review the role of OSRts, notably NRF2 and p53 as well as other transcription factors that modulate the response. We discuss how hierarchal the oxidative stress response is and controls ‘live or die’ signals. This is followed by a discussion on how plant-derived molecules, including polyphenols, which are described both as prooxidants and antioxidants within the cancer cells, have been reported to affect the activities of OSRts. Deriving an example from preliminary data from our group, we discuss how plant-derived molecules might modulate the oxidative stress response by causing structural perturbations in the proteinaceous transcription factors, notably Nrf2 and p53. We look at this information in the light of understanding how plant derived molecules may be used as lead compounds to develop modulators of the oxidative stress response.
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Cite this article as:
Transcriptional Control of the Oxidative Stress Response and Implications of Using Plant Derived Molecules for Therapeutic Interventions in Cancer, Current Medicinal Chemistry 2021; 28 (41) . https://dx.doi.org/10.2174/0929867328666210218110550
DOI https://dx.doi.org/10.2174/0929867328666210218110550 |
Print ISSN 0929-8673 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-533X |
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