脂质代谢对铁下垂的动态调节

IF 5.9 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Nathchar Naowarojna, Tianshu William Wu, Zijian Pan, Mengyu Li, Jingrong Regina Han, Yilong Zou
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引用次数: 2

摘要

意义:铁下垂的特征是以铁依赖的方式在细胞膜上积累多不饱和脂质过氧化。铁下垂涉及多种病理生理过程,包括癌症、神经退行性变和缺血再灌注组织损伤。然而,我们对铁下垂的动态和环境特异性调节的理解仍然不完整。作为过氧化的主要底物,细胞脂质组通过控制多不饱和脂质的丰度和可用性来调节铁凋亡的敏感性和执行。反过来,细胞脂质组受一个复杂的酶和转运体网络以及上游的受体、激酶和转录因子的调节。许多研究揭示了脂质代谢与铁下垂之间的联系。在这里,我们总结了我们目前对脂质组和相关蛋白调节因子在铁衰亡的各个阶段的作用的了解,从细胞经历铁衰亡应激的起始、执行到细胞死亡逃避。关键问题:本文综述了脂质过氧化和铁下垂的机制,讨论了直接导致脂质过氧化和铁下垂的脂质种类,细胞如何调节这些促铁下垂的脂质丰度,脂质过氧化如何导致细胞死亡,以及在铁下垂条件下细胞如何预防和修复膜脂质损伤。未来方向:体内细胞命运调节可能不同于体外培养环境。我们设想,对这些重要问题的全面和详细的了解,在体内铁下垂的动态调节将加速我们的铁下垂靶向治疗的发展,以改善人类健康。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Regulation of Ferroptosis by Lipid Metabolism.

Significance: Ferroptosis is featured by the accumulation of polyunsaturated-lipid peroxidation on cellular membranes in an iron-dependent manner. Ferroptosis has been implicated in various pathophysiological processes, including cancer, neurodegeneration, and ischemia-reperfusion tissue injury. However, our understanding about the dynamic and context-specific regulation of ferroptosis remains incomplete. Recent Advances: As the major substrate for peroxidation, the cellular lipidome regulates ferroptosis sensitivity and execution by controlling the abundance and availability of polyunsaturated-lipids for peroxidative modifications. In turn, the cellular lipidome is regulated by a complex network of enzymes and transporters, as well as upstream layers of receptors, kinases, and transcription factors. A number of research has shed light on the link between lipid metabolism and ferroptosis. Here, we summarize our current knowledge on the role of the lipidome and associated protein regulators in various stages of ferroptosis, ranging from initiation, execution to cell death evasion by cells experiencing ferroptotic stress. Critical Issues: This review provides an overview of the mechanisms underlying lipid peroxidation and ferroptosis by discussing the lipid species that directly contribute to lipid peroxidation and ferroptosis, how cells regulate the abundances of these pro-ferroptosis lipids, how lipid peroxidation causes cell death, and how cells prevent and repair membrane lipid damage under ferroptotic conditions. Future Directions: Cell fate regulation in vivo could be different from in vitro culture settings. We envision that a comprehensive and detailed understanding about these important questions in the dynamic regulation of ferroptosis in vivo will accelerate our development of ferroptosis-targeted therapies to improve human health.

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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
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