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核因子红细胞 2 相关因子 2 调节癌症代谢。

Nuclear Factor Erythroid 2-Related Factor 2 in Regulating Cancer Metabolism.

机构信息

Department of Mitochondrial Physiology, Institute of Physiology of the Czech Academy of Sciences (IPHYS CAS), Prague, Czech Republic.

Department of Medical Chemistry, Faculty of Medicine, University of Debrecen, Debrecen, Hungary.

出版信息

Antioxid Redox Signal. 2020 Nov 1;33(13):966-997. doi: 10.1089/ars.2020.8024. Epub 2020 Mar 18.

Abstract

Nuclear factor erythroid 2 (NFE2)-related factor 2 (, or NRF2) is a transcription factor predominantly affecting the expression of antioxidant genes. NRF2 plays a significant role in the control of redox balance, which is crucial in cancer cells. NRF2 activation regulates numerous cancer hallmarks, including metabolism, cancer stem cell characteristics, tumor aggressiveness, invasion, and metastasis formation. We review the molecular characteristics of the NRF2 pathway and discuss its interactions with the cancer hallmarks previously listed. The noncanonical activation of NRF2 was recently discovered, and members of this pathway are involved in carcinogenesis. Further, cancer-related changes (, metabolic flexibility) that support cancer progression were found to be redox- and NRF2 dependent. NRF2 undergoes Janus-faced behavior in cancers. The pro- or antineoplastic effects of NRF2 are context dependent and essentially based on the specific molecular characteristics of the cancer in question. Therefore, systematic investigation of NRF2 signaling is necessary to clarify its role in cancer etiology. The biggest challenge in the NRF2 field is to determine which cancers can be targeted for better clinical outcomes. Further, large-scale genomic and transcriptomic studies are missing to correlate the clinical outcome with the activity of the NRF2 system. To exploit NRF2 in a clinical setting in the future, the druggable members of the NRF2 pathway should be identified. In addition, it will be important to study how the modulation of the NRF2 system interferes with cytostatic drugs and their combinations.

摘要

核因子红细胞 2(NFE2)相关因子 2(NRF2)是一种转录因子,主要影响抗氧化基因的表达。NRF2 在控制氧化还原平衡中发挥着重要作用,而氧化还原平衡在癌细胞中至关重要。NRF2 的激活调节着许多癌症的标志性特征,包括代谢、癌症干细胞特征、肿瘤侵袭性、转移形成。我们回顾了 NRF2 通路的分子特征,并讨论了其与前面列出的癌症标志性特征的相互作用。最近发现了 NRF2 的非经典激活,该途径的成员参与了癌症的发生。此外,支持癌症进展的与癌症相关的变化(代谢灵活性)被发现依赖于氧化还原和 NRF2。NRF2 在癌症中表现出两面性。NRF2 的促癌或抑癌作用取决于上下文,并且主要基于所研究癌症的特定分子特征。因此,有必要对 NRF2 信号进行系统研究,以阐明其在癌症发病机制中的作用。NRF2 领域的最大挑战是确定哪些癌症可以作为治疗靶点,以获得更好的临床效果。此外,还需要进行大规模的基因组和转录组研究,以将 NRF2 系统的活性与临床结果相关联。为了在未来的临床环境中利用 NRF2,应该确定 NRF2 途径的可靶向成员。此外,研究 NRF2 系统的调节如何干扰细胞抑制剂药物及其组合将非常重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a66d/7533893/9d2fe2e7db63/ars.2020.8024_figure1.jpg

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