Randolph J B, Waggoner A S
Center for Light Microscope Imaging and Biotechnology and Department of Chemistry, Carnegie Mellon University, 4400 Fifth Avenue, Pittsburgh, PA 15213, USA.
Nucleic Acids Res. 1997 Jul 15;25(14):2923-9. doi: 10.1093/nar/25.14.2923.
In this work, we studied the fluorescence and hybridization of multiply-labeled DNA probes which have the hydrophilic fluorophore 1-(straightepsilon-carboxypentynyl)-1'-ethyl- 3,3,3', 3'-tetramethylindocarbocyanine-5,5'-disulfonate (Cy3) attached via either a short or long linker at the C-5 position of deoxyuridine. We describe the effects of labeling density, fluorophore charge and linker length upon five properties of the probe: fluorescence intensity, the change in fluorescence upon duplex formation, the quantum yield of fluorescence (Phif), probe-target stability and specificity. For the hydrophilic dye Cy3, we have demonstrated that the fluorescence intensity andPhifare maximized when labeling every 6th base using the long linker. With a less hydrophilic dye, a labeling density this high could not be achieved without serious quenching of the fluorescence. The target specificity of multiply-labeled DNA probes was just as high as compared to the unmodified control probe, however, a less stable probe-target duplex is formed that exhibits a lower melting temperature. A mechanism that accounts for this destabilization is proposed which is consistent with our data. It involves dye-dye and dye-nucleotide interactions which appear to stabilize a single-stranded conformation of the probe.
在这项工作中,我们研究了多重标记DNA探针的荧光和杂交特性。这些探针在脱氧尿苷的C-5位通过短连接子或长连接子连接了亲水性荧光团1-(直链ε-羧基戊炔基)-1'-乙基-3,3,3',3'-四甲基吲哚羰花青-5,5'-二磺酸盐(Cy3)。我们描述了标记密度、荧光团电荷和连接子长度对探针五个特性的影响:荧光强度、双链形成时荧光的变化、荧光量子产率(Phif)、探针-靶标稳定性和特异性。对于亲水性染料Cy3,我们已经证明,使用长连接子每间隔6个碱基进行标记时,荧光强度和Phif达到最大值。对于亲水性较低的染料,如果不严重淬灭荧光,就无法达到如此高的标记密度。多重标记DNA探针的靶标特异性与未修饰的对照探针一样高,然而,形成的探针-靶标双链体稳定性较低,其解链温度也较低。我们提出了一种解释这种不稳定现象的机制,该机制与我们的数据一致。它涉及染料-染料和染料-核苷酸相互作用,这些相互作用似乎稳定了探针的单链构象。