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用多通道荧光探针探索线粒体硫化氢在维持极性和 mtDNA 完整性方面的作用。

Exploring the Role of Mitochondrial Hydrogen Sulfide in Maintaining Polarity and mtDNA Integrity with a Multichannel Fluorescent Probe.

机构信息

State Key Laboratory of Applied Organic Chemistry, Key Laboratory of Nonferrous Metals Chemistry and Resources Utilization of Gansu Province, College of Chemistry and Chemical Engineering, Lanzhou University, Lanzhou 730000, China.

State Key Laboratory for Animal Disease Control and Prevention, College of Veterinary Medicine, Lanzhou University, Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Lanzhou 730000, China.

出版信息

Anal Chem. 2023 Dec 19;95(50):18460-18469. doi: 10.1021/acs.analchem.3c03663. Epub 2023 Nov 21.

Abstract

Abnormal mitochondrial state has been implicated in the pathogenesis of various diseases including neurodegenerative disorders, myopathies, cardiovascular diseases, and cancers. Assessing mitochondrial functionality can be achieved by monitoring alterations in mitochondrial polarity and mitochondrial DNA (mtDNA) integrity, which serve as valuable biomarkers. Hydrogen sulfide (HS), a gaseous signaling molecule, plays a regulatory role in mitochondrial respiratory chain activity, ATP synthesis, and calcium ion balance, thereby influencing cellular metabolism and signal transduction. Investigating the interplay between mitochondrial HS, polarity, and mtDNA can enhance our understanding of the underlying regulatory mechanisms involved in HS-mediated mitochondrial functions. To address this, we designed a mitochondria-targeted multichannel fluorescent probe, , capable of cascaded detection of HS and polarity, as well as parallel detection of mtDNA. The probe exhibited a significant turn-on response to HS, emitting at approximately 604 nm, while the product demonstrated high sensitivity to polarity within the wavelength range of 526-591 nm. Additionally, the probe was able to bind to DNA, resulting in an enhanced long-wave emission at 668 nm. Facilitated by , our study provides novel insights into the role of mitochondrial HS in maintaining mitochondrial polarity and validates its protective effect on mtDNA through antioxidative mechanisms. Overall, this work proposes a potential therapeutic strategy for modulating the inflammatory process in mitochondrial-related diseases.

摘要

异常的线粒体状态与多种疾病的发病机制有关,包括神经退行性疾病、肌肉疾病、心血管疾病和癌症。通过监测线粒体极性和线粒体 DNA(mtDNA)完整性的变化,可以评估线粒体功能,这些变化可以作为有价值的生物标志物。硫化氢(HS)作为一种气态信号分子,在调节线粒体呼吸链活性、ATP 合成和钙离子平衡方面发挥作用,从而影响细胞代谢和信号转导。研究线粒体 HS、极性和 mtDNA 之间的相互作用可以增强我们对 HS 介导的线粒体功能中涉及的潜在调节机制的理解。为了解决这个问题,我们设计了一种线粒体靶向多通道荧光探针 ,能够级联检测 HS 和极性,以及平行检测 mtDNA。该探针对 HS 表现出显著的开启响应,发射波长约为 604nm,而产物 在 526-591nm 波长范围内对极性表现出高灵敏度。此外,该探针能够与 DNA 结合,导致在 668nm 处的长波发射增强。通过 ,我们的研究提供了关于线粒体 HS 在维持线粒体极性中的作用的新见解,并通过抗氧化机制验证了其对 mtDNA 的保护作用。总的来说,这项工作提出了一种潜在的治疗策略,用于调节与线粒体相关的疾病中的炎症过程。

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