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利用 PTD 缀合的荧光素酶对活细胞进行细胞内 ATP 检测。

Intracellular ATP assay of live cells using PTD-conjugated luciferase.

机构信息

Division of Bio-Imaging, Chuncheon Center, Korea Basic Science Institute, Chuncheon 200-701, Korea.

出版信息

Sensors (Basel). 2012 Nov 12;12(11):15628-37. doi: 10.3390/s121115628.

Abstract

Luciferase is a sensitive, reliable biological sensor used for measuring ATP. However, its widespread application in drug discovery and toxicology studies has been limited due to unavoidable cell extraction processes, which cause inaccurate measurements of intracellular ATP and obstruct the application of homogenous high-throughput screening. Recently, we developed a protein transduction domain-conjugated luciferase (PTD-Luc) for measuring cellular uptake efficacy. In this study, we evaluated the applicability of PTD-Luc to an intracellular ATP assay of live cells. The predominant fluorescence of Alexa 647-PTD-Luc was in the cytosol, whereas the fluorescence of Alexa 647-Luc was visualized surrounding the cell membrane, as confirmed by Western blot analysis. In vitro, PTD-Luc could detect less than 10(-9) M ATP, and the correlation between the luciferase activity of PTD-Luc and the ATP content was strong (R = 0.999, p < 0.001). In vivo, luminescence signals of PTD-Luc detected intracellular ATP in as few as 50 HeLa cells, with a strong correlation between luminescence and cell number, suggesting high sensitivity and reliability. Furthermore, two blockers of the glycolytic pathway (2-deoxyglucose and iodoacetic acid) inhibited the signal in a dose-dependent manner, whereas potassium cyanide, an inhibitor of oxidative phosphorylation, had no effect on intracellular ATP in vivo, as seen with the PTD-Luc sensor. These data show that PTD-Luc can directly measure the intracellular ATP content in live cells, allowing real-time kinetic studies, suggesting that it is a promising tool for high-throughput drug screening and cytotoxicity assays.

摘要

荧光素酶是一种灵敏、可靠的生物传感器,用于测量 ATP。然而,由于不可避免的细胞提取过程,其在药物发现和毒理学研究中的广泛应用受到限制,因为这些过程会导致细胞内 ATP 的测量不准确,并阻碍均相高通量筛选的应用。最近,我们开发了一种与蛋白转导结构域偶联的荧光素酶(PTD-Luc),用于测量细胞摄取效率。在本研究中,我们评估了 PTD-Luc 在活细胞内 ATP 测定中的适用性。Alexa 647-PTD-Luc 的主要荧光位于细胞质中,而 Alexa 647-Luc 的荧光则围绕细胞膜可见,这通过 Western blot 分析得到证实。在体外,PTD-Luc 可以检测到低于 10(-9) M 的 ATP,并且 PTD-Luc 的荧光素酶活性与 ATP 含量之间存在很强的相关性(R = 0.999,p < 0.001)。在体内,PTD-Luc 的发光信号可以检测到少至 50 个 HeLa 细胞内的细胞内 ATP,发光与细胞数量之间存在很强的相关性,表明其具有高灵敏度和可靠性。此外,两种糖酵解途径的抑制剂(2-脱氧葡萄糖和碘乙酸)以剂量依赖性方式抑制信号,而氧化磷酸化的抑制剂氰化钾对体内细胞内 ATP 没有影响,如 PTD-Luc 传感器所示。这些数据表明,PTD-Luc 可以直接测量活细胞内的细胞内 ATP 含量,允许进行实时动力学研究,表明它是高通量药物筛选和细胞毒性测定的有前途的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83d8/3522978/1e6d33c3e3b1/sensors-12-15628f1.jpg

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