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烟酰胺腺嘌呤二核苷酸磷酸氧化酶 4(NOX4)在癌症中的作用:将氧化还原信号与致癌代谢适应联系起来。

NADPH Oxidase 4 (NOX4) in Cancer: Linking Redox Signals to Oncogenic Metabolic Adaptation.

机构信息

Service of Endocrinology, Diabetology, Nutrition and Patient Education, Department of Internal Medicine, Geneva University Hospitals, Diabetes Center of the Faculty of Medicine, University of Geneva, CH-1211 Geneva, Switzerland.

出版信息

Int J Mol Sci. 2022 Feb 28;23(5):2702. doi: 10.3390/ijms23052702.

Abstract

Cancer cells can survive and maintain their high proliferation rate in spite of their hypoxic environment by deploying a variety of adaptative mechanisms, one of them being the reorientation of cellular metabolism. A key aspect of this metabolic rewiring is the promotion of the synthesis of antioxidant molecules in order to counter-balance the hypoxia-related elevation of reactive oxygen species (ROS) production and thus combat the onset of cellular oxidative stress. However, opposite to their negative role in the inception of oxidative stress, ROS are also key modulatory components of physiological cellular metabolism. One of the major physiological cellular ROS sources is the NADPH oxidase enzymes (NOX-es). Indeed, NOX-es produce ROS in a tightly regulated manner and control a variety of cellular processes. By contrast, pathologically elevated and unbridled NOX-derived ROS production is linked to diverse cancerogenic processes. In this respect, NOX4, one of the members of the NOX family enzymes, is of particular interest. In fact, NOX4 is closely linked to hypoxia-related signaling and is a regulator of diverse metabolic processes. Furthermore, NOX4 expression and function are altered in a variety of malignancies. The aim of this review is to provide a synopsis of our current knowledge concerning NOX4-related processes in the oncogenic metabolic adaptation of cancer cells.

摘要

癌细胞即使处于缺氧环境中,也能通过多种适应机制来存活并保持其高增殖率,其中之一是细胞代谢的重新定向。这种代谢重编程的一个关键方面是促进抗氧化分子的合成,以平衡与缺氧相关的活性氧(ROS)产生的升高,从而抵抗细胞氧化应激的发生。然而,与它们在氧化应激起始中的负面作用相反,ROS 也是生理细胞代谢的关键调节成分之一。主要的生理细胞 ROS 来源之一是 NADPH 氧化酶(NOX-es)。事实上,NOX-es 以严格调节的方式产生 ROS,并控制着各种细胞过程。相比之下,病理性升高和不受控制的 NOX 衍生的 ROS 产生与多种致癌过程有关。在这方面,NOX 家族酶的成员之一——NOX4 特别引人注目。事实上,NOX4 与缺氧相关信号密切相关,是多种代谢过程的调节剂。此外,NOX4 的表达和功能在多种恶性肿瘤中发生改变。本文综述旨在概述我们目前关于 NOX4 相关过程在癌细胞致癌代谢适应中的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d32/8910662/9b91b96a2261/ijms-23-02702-g001.jpg

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