Lee Min Hee, Park Nayoung, Yi Chunsik, Han Ji Hye, Hong Ji Hye, Kim Kwang Pyo, Kang Dong Hoon, Sessler Jonathan L, Kang Chulhun, Kim Jong Seung
Department of Chemistry, The University of Texas at Austin , Austin, Texas 78712-1224, United States.
J Am Chem Soc. 2014 Oct 8;136(40):14136-42. doi: 10.1021/ja506301n. Epub 2014 Sep 3.
We report here a mitochondria-targetable pH-sensitive probe that allows for a quantitative measurement of mitochondrial pH changes, as well as the real-time monitoring of pH-related physiological effects in live cells. This system consists of a piperazine-linked naphthalimide as a fluorescence off-on signaling unit, a cationic triphenylphosphonium group for mitochondrial targeting, and a reactive benzyl chloride subunit for mitochondrial fixation. It operates well in a mitochondrial environment within whole cells and displays a desirable off-on fluorescence response to mitochondrial acidification. Moreover, this probe allows for the monitoring of impaired mitochondria undergoing mitophagic elimination as the result of nutrient starvation. It thus allows for the monitoring of the organelle-specific dynamics associated with the conversion between physiological and pathological states.
我们在此报告一种可靶向线粒体的pH敏感探针,它能够对线粒体pH变化进行定量测量,并实时监测活细胞中与pH相关的生理效应。该系统由一个作为荧光开-关信号单元的哌嗪连接萘二甲酰亚胺、一个用于线粒体靶向的阳离子三苯基膦基团以及一个用于线粒体固定的反应性苄基氯亚基组成。它在全细胞的线粒体环境中运行良好,对线粒体酸化表现出理想的开-关荧光响应。此外,该探针能够监测因营养饥饿而经历线粒体自噬消除的受损线粒体。因此,它能够监测与生理状态和病理状态之间转换相关的细胞器特异性动态变化。