4.8 Article

Unique Sandwich Stacking of Pyrene-Adenine-Pyrene for Selective and Ratiometric Fluorescent Sensing of ATP at Physiological pH

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JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 131, 期 42, 页码 15528-15533

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AMER CHEMICAL SOC
DOI: 10.1021/ja906855a

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资金

  1. NRL [R04-2007-000-2007-0]
  2. KOSEF/MOST [R11-2005-008-02003-0, R11-2008-052-01000]
  3. BK21
  4. WCU [R32-2008-000-10180-0]
  5. National Research Foundation of Korea [R11-2005-008-02003-0, 2009-00029, R32-2008-000-10180-0, 2008-0057799, 2008-0061956] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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A pincer-like benzene-bridged sensor 1 with a pyrene excimer as a signal source and imidazolium as a phosphate anion receptor was synthesized and investigated for ATP sensing. A unique switch of excimer vs monomer pyrene fluorescence of 1 is observed in the presence of ATP due to the charcteristic sandwich pi-pi stacking of pyrene-adenine-pyrene. On the other hand, four other bases of nucleoside triphosphates such as,GTP, CTP, UTP, and TTP can interact only from the outside with the already stabilized stacked pyrene-pyrene dimer of 1, resulting in excimer fluorescence quenching. The fluorescent intensity ratio of monomer-to-excimer for 1 upon binding with ATP (I-375/I-487) is much larger than that upon binding with ADP and AMP. This difference is large enough to discriminate ATP from ADP and AMP. As one of the biological applications, sensor 1 is successfully applied to the ATP staining experiments. Sensor 1 is also applied to monitor the hydrolysis of ATP and ADP by apyrase. The results indicate that I is a useful fluorescent sensor for investigations of ATP-relevant biological processes.

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