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肽桥联双核 Ru(II) 配合物用于活哺乳动物细胞中线粒体靶向监测氧浓度和 ROS 生成的动态变化。

Peptide-bridged dinuclear Ru(II) complex for mitochondrial targeted monitoring of dynamic changes to oxygen concentration and ROS generation in live mammalian cells.

机构信息

School of Chemical Sciences, National Biophotonics and Imaging Platform, Dublin City University , Dublin 9, Ireland.

出版信息

J Am Chem Soc. 2014 Oct 29;136(43):15300-9. doi: 10.1021/ja508043q. Epub 2014 Oct 17.

Abstract

A novel mitochondrial localizing ruthenium(II) peptide conjugate capable of monitoring dynamic changes in local O2 concentrations within living cells is presented. The complex is comprised of luminescent dinuclear ruthenium(II) polypyridyl complex bridged across a single mitochondrial penetrating peptide, FrFKFrFK-CONH2 (r = D-arginine). The membrane permeability and selective uptake of the peptide conjugate at the mitochondria of mammalian cells was demonstrated using confocal microscopy. Dye co-localization studies confirmed very precise localization and preconcentration of the probe at the mitochondria. This precision permitted collection of luminescent lifetime images of the probe, without the need for co-localizing dye and permitted semiquantitative determination of oxygen concentration at the mitochondria using calibration curves collected at 37 °C for the peptide conjugate in PBS buffer. Using Antimycin A the ability of the probe to respond dynamically to changing O2 concentrations within live HeLa cells was demonstrated. Furthermore, based on lifetime data it was evident that the probe also responds to elevated reactive oxygen species (ROS) levels within the mitochondria, where the greater quenching capacity of these species led to luminescent lifetimes of the probe at longer Antimycin A incubation times which lay outside of the O2 concentration range. Although both the dinuclear complex and a mononuclear analogue conjugated to an octaarginine peptide sequence exhibited some cytotoxicity over 24 h, cells were tolerant of the probes over periods of 4 to 6 h which facilitated imaging. These metal-peptide conjugated probes offer a valuable opportunity for following dynamic changes to mitochondrial function which should be of use across domains in which the metabolic activity of live cells are of interest from molecular biology and drug discovery.

摘要

呈现了一种新型的线粒体定位钌(II)肽缀合物,能够监测活细胞内局部 O2 浓度的动态变化。该配合物由发光双核钌(II)多吡啶络合物桥接在单个线粒体穿透肽,FrFKFrFK-CONH2(r = D-精氨酸)上组成。使用共焦显微镜证明了肽缀合物在哺乳动物细胞的线粒体中的膜通透性和选择性摄取。染料共定位研究证实了探针在线粒体中的非常精确的定位和预浓缩。这种精度允许收集探针的发光寿命图像,而无需共定位染料,并允许使用在 PBS 缓冲液中收集的 37°C 下的肽缀合物的校准曲线对半定量确定线粒体中的氧浓度。使用抗霉素 A 证明了探针能够动态响应活 HeLa 细胞内 O2 浓度的变化。此外,根据寿命数据,显然探针也响应线粒体中升高的活性氧(ROS)水平,其中这些物质的更大淬灭能力导致探针的发光寿命在更长的抗霉素 A 孵育时间内,这超出了 O2 浓度范围。尽管双核配合物和连接到八聚精氨酸肽序列的单核类似物都表现出一些在 24 小时内的细胞毒性,但细胞能够耐受探针 4 到 6 小时的时间,这有助于成像。这些金属-肽缀合物探针为研究线粒体功能的动态变化提供了有价值的机会,这应该在从分子生物学和药物发现到对活细胞代谢活性感兴趣的各个领域中都有应用。

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