线粒体 Na+/Ca2+ 交换子 NCLX 在低氧诱导因子的激活过程中发挥着重要作用

IF 10.7 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Redox Biology Pub Date : 2024-09-19 DOI:10.1016/j.redox.2024.103364
Carmen Choya-Foces , Elisa Navarro , Cristóbal de los Ríos , Manuela G. López , Javier Egea , Pablo Hernansanz-Agustín , Antonio Martínez-Ruiz
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引用次数: 0

摘要

真核细胞和生物体的基本生命功能依赖于氧气,在氧气供应减少(缺氧)的情况下,真核细胞和生物体会表现出一系列适应性反应。二十年前,低氧诱导因子(HIFs)已被阐明,其稳定和功能激活的主要机制是对细胞膜氧浓度降低做出反应。人类对缺氧的急性反应已经存在了几十年,但其对氧气感应的精确分子机制还不完全清楚。人们已经知道,这些反应中隐含着氧化还原成分,与线粒体产生的活性氧(ROS)有关。我们最近描述了线粒体钠/钙交换子 NCLX 参与线粒体电子传递链调节和 ROS 生成以应对急性缺氧的机制。通过使用 NCLX 抑制剂和干扰 RNA,我们发现 NCLX 活性是缺氧条件下 HIF-α 亚基稳定和 HIF-1 依赖性转录活性所必需的。我们还发现,在任何情况下,缺氧线粒体 ROS 的产生都不是 HIF-1α 稳定所必需的,这表明在 NCLX 介导的对缺氧的反应中,基础细胞膜氧化还原状态或其他机制可能通过 HIF-α 稳定发挥作用。这一发现提供了缺氧急性反应和中期反应之间的联系,加强了线粒体细胞信号在缺氧反应中的核心作用。
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The mitochondrial Na+/Ca2+ exchanger NCLX is implied in the activation of hypoxia-inducible factors
Eukaryotic cells and organisms depend on oxygen for basic living functions, and they display a panoply of adaptations to situations in which oxygen availability is diminished (hypoxia). A number of these responses in animals are mediated by changes in gene expression programs directed by hypoxia-inducible factors (HIFs), whose main mechanism of stabilization and functional activation in response to decreased cytosolic oxygen concentration was elucidated two decades ago. Human acute responses to hypoxia have been known for decades, although their precise molecular mechanism for oxygen sensing is not fully understood. It is already known that a redox component, linked with reactive oxygen species (ROS) production of mitochondrial origin, is implied in these responses. We have recently described a mechanism by which the mitochondrial sodium/calcium exchanger, NCLX, participates in mitochondrial electron transport chain regulation and ROS production in response to acute hypoxia.
Here we show that NCLX is also implied in the response to hypoxia mediated by the HIFs. By using a NCLX inhibitor and interference RNA we show that NCLX activity is necessary for HIF-α subunits stabilization in hypoxia and for HIF-1-dependent transcriptional activity. We also show that hypoxic mitochondrial ROS production is not required for HIF-1α stabilization under all circumstances, suggesting that the basal cytosolic redox state or other mechanism(s) could be operating in the NCLX-mediated response to hypoxia that operates through HIF-α stabilization. This finding provides a link between acute and medium-term responses to hypoxia, reinforcing a central role of mitochondrial cell signalling in the response to hypoxia.
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来源期刊
Redox Biology
Redox Biology BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
19.90
自引率
3.50%
发文量
318
审稿时长
25 days
期刊介绍: Redox Biology is the official journal of the Society for Redox Biology and Medicine and the Society for Free Radical Research-Europe. It is also affiliated with the International Society for Free Radical Research (SFRRI). This journal serves as a platform for publishing pioneering research, innovative methods, and comprehensive review articles in the field of redox biology, encompassing both health and disease. Redox Biology welcomes various forms of contributions, including research articles (short or full communications), methods, mini-reviews, and commentaries. Through its diverse range of published content, Redox Biology aims to foster advancements and insights in the understanding of redox biology and its implications.
期刊最新文献
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