Epigenetic Control of Redox Pathways in Cancer Progression.

IF 5.9 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Antioxidants & redox signaling Pub Date : 2025-01-16 DOI:10.1089/ars.2023.0465
Vandit Shah, Hiu Yan Lam, Charlene Hoi-Mun Leong, Reo Sakaizawa, Jigna S Shah, Alan Prem Kumar
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Abstract

Significance: Growing evidence indicates the importance of redox reactions homeostasis, mediated predominantly by reactive oxygen species (ROS) in influencing the development, differentiation, progression, metastasis, programmed cell death, tumor microenvironment, and therapeutic resistance of cancer. Therefore, reviewing the ROS-linked epigenetic changes in cancer is fundamental to understanding the progression and prevention of cancer. Recent Advances: We review in depth the molecular mechanisms involved in ROS-mediated epigenetic changes that lead to alteration of gene expression by altering DNA, modifying histones, and remodeling chromatin and noncoding RNA. Critical Issues: In cancerous cells, alterations of the gene-expression regulatory elements could be generated by the virtue of imbalance in tumor microenvironment. Various oxidizing agents and mitochondrial electron transport chain are the major pathways that generate ROS. ROS plays a key role in carcinogenesis by activating pro-inflammatory signaling pathways and DNA damage. This loss of ROS-mediated epigenetic regulation of the signaling pathways may promote tumorigenesis. We address all such aspects in this review. Future Directions: Developments in this growing field of epigenetics are expected to contribute to further our understanding of human health and diseases such as cancer and to test the clinical applications of redox-based therapy. Recent studies of the cancer-epigenetic landscape have revealed pervasive deregulation of the epigenetic factors in cancer. Thus, the study of interaction between ROS and epigenetic factors in cancer holds a great promise in the development of effective and targeted treatment modalities. Antioxid. Redox Signal. 00, 000-000.

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癌症进展中氧化还原途径的表观遗传控制。
意义:越来越多的证据表明,主要由活性氧(ROS)介导的氧化还原反应稳态在影响癌症的发生、分化、进展、转移、程序性细胞死亡、肿瘤微环境和治疗耐药中的重要性。因此,回顾癌症中ros相关的表观遗传变化是了解癌症进展和预防的基础。最新进展:我们深入回顾了ros介导的表观遗传变化的分子机制,这些变化通过改变DNA、修饰组蛋白、重塑染色质和非编码RNA而导致基因表达的改变。关键问题:在癌细胞中,由于肿瘤微环境的不平衡,可能导致基因表达调控元件的改变。各种氧化剂和线粒体电子传递链是产生ROS的主要途径。ROS通过激活促炎信号通路和DNA损伤在致癌过程中起关键作用。ros介导的表观遗传信号通路调控的缺失可能促进肿瘤的发生。我们在本次审查中讨论所有这些方面。未来方向:表观遗传学这一不断发展的领域的发展有望有助于我们进一步了解人类健康和癌症等疾病,并测试基于氧化还原的治疗的临床应用。最近对癌症表观遗传景观的研究揭示了普遍解除癌症表观遗传因素的管制。因此,研究ROS与表观遗传因子在癌症中的相互作用对开发有效的靶向治疗方式具有很大的希望。Antioxid。氧化还原信号:00000 - 00000。
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来源期刊
Antioxidants & redox signaling
Antioxidants & redox signaling 生物-内分泌学与代谢
CiteScore
14.10
自引率
1.50%
发文量
170
审稿时长
3-6 weeks
期刊介绍: Antioxidants & Redox Signaling (ARS) is the leading peer-reviewed journal dedicated to understanding the vital impact of oxygen and oxidation-reduction (redox) processes on human health and disease. The Journal explores key issues in genetic, pharmaceutical, and nutritional redox-based therapeutics. Cutting-edge research focuses on structural biology, stem cells, regenerative medicine, epigenetics, imaging, clinical outcomes, and preventive and therapeutic nutrition, among other areas. ARS has expanded to create two unique foci within one journal: ARS Discoveries and ARS Therapeutics. ARS Discoveries (24 issues) publishes the highest-caliber breakthroughs in basic and applied research. ARS Therapeutics (12 issues) is the first publication of its kind that will help enhance the entire field of redox biology by showcasing the potential of redox sciences to change health outcomes. ARS coverage includes: -ROS/RNS as messengers -Gaseous signal transducers -Hypoxia and tissue oxygenation -microRNA -Prokaryotic systems -Lessons from plant biology
期刊最新文献
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