Conlon Patrick, Yang Chaoyong James, Wu Yanrong, Chen Yan, Martinez Karen, Kim Youngmi, Stevens Nathan, Marti Angel A, Jockusch Steffen, Turro Nicholas J, Tan Weihong
Center for Research at Bio/Nano Interface, Department of Chemistry and Shands Cancer Center, University of Florida Genetics Institute, University of Florida, Gainesville, Florida 32611-7200, USA.
J Am Chem Soc. 2008 Jan 9;130(1):336-42. doi: 10.1021/ja076411y. Epub 2007 Dec 14.
Molecular beacon DNA probes, containing 1-4 pyrene monomers on the 5' end and the quencher DABCYL on the 3' end, were engineered and employed for real-time probing of DNA sequences. In the absence of a target sequence, the multiple-pyrene labeled molecular beacons (MBs) assumed a stem-closed conformation resulting in quenching of the pyrene excimer fluorescence. In the presence of target, the beacons switched to a stem-open conformation, which separated the pyrene label from the quencher molecule and generated an excimer emission signal proportional to the target concentration. Steady-state fluorescence assays resulted in a subnanomolar limit of detection in buffer, whereas time-resolved signaling enabled low-nanomolar target detection in cell-growth media. It was found that the excimer emission intensity could be scaled by increasing the number of pyrene monomers conjugated to the 5' terminal. Each additional pyrene monomer resulted in substantial increases in the excimer emission intensities, quantum yields, and excited-state lifetimes of the hybridized MBs. The long fluorescence lifetime ( approximately 40 ns), large Stokes shift (130 nm), and tunable intensity of the excimer make this multiple-pyrene moiety a useful alternative to traditional fluorophore labeling in nucleic acid probes.
设计并应用了分子信标DNA探针,其5'端含有1 - 4个芘单体,3'端含有猝灭剂DABCYL,用于实时探测DNA序列。在没有靶序列的情况下,多个芘标记的分子信标(MBs)呈茎环封闭构象,导致芘激基缔合物荧光猝灭。在有靶标的情况下,信标转变为茎环开放构象,使芘标记与猝灭剂分子分离,并产生与靶标浓度成正比的激基缔合物发射信号。稳态荧光测定在缓冲液中的检测限为亚纳摩尔,而时间分辨信号检测能够在细胞生长培养基中检测到低纳摩尔的靶标。研究发现,激基缔合物发射强度可通过增加与MBs 5'端共轭的芘单体合芘单体的数量来调节。每增加一个芘单体,杂交MBs的激基缔合物发射强度、量子产率和激发态寿命都会显著增加。芘激基缔合物长荧光寿命(约40 ns)、大斯托克斯位移(130 nm)和可调强度使其成为核酸探针中传统荧光团标记的有用替代物。