Institute of Inorganic Chemistry, University of Vienna, Vienna, Austria.
PLoS One. 2011;6(7):e22177. doi: 10.1371/journal.pone.0022177. Epub 2011 Jul 25.
Cy3 and Cy5 are among the most commonly used oligonucleotide labeling molecules. Studies of nucleic acid structure and dynamics use these dyes, and they are ubiquitous in microarray experiments. They are sensitive to their environment and have higher quantum yield when bound to DNA. The fluorescent intensity of terminal cyanine dyes is also known to be significantly dependent on the base sequence of the oligonucleotide. We have developed a very precise and high-throughput method to evaluate the sequence dependence of oligonucleotide labeling dyes using microarrays and have applied the method to Cy3 and Cy5. We used light-directed in-situ synthesis of terminally-labeled microarrays to determine the fluorescence intensity of each dye on all 1024 possible 5'-labeled 5-mers. Their intensity is sensitive to all five bases. Their fluorescence is higher with 5' guanines, and adenines in subsequent positions. Cytosine suppresses fluorescence. Intensity falls by half over the range of all 5-mers for Cy3, and two-thirds for Cy5. Labeling with 5'-biotin-streptavidin-Cy3/-Cy5 gives a completely different sequence dependence and greatly reduces fluorescence compared with direct terminal labeling.
Cy3 和 Cy5 是最常用的寡核苷酸标记分子之一。这些染料用于研究核酸结构和动态,并且在微阵列实验中无处不在。它们对环境敏感,与 DNA 结合时量子产率更高。末端氰基染料的荧光强度也已知与其寡核苷酸的碱基序列有很大的依赖性。我们开发了一种非常精确和高通量的方法,使用微阵列评估寡核苷酸标记染料的序列依赖性,并将该方法应用于 Cy3 和 Cy5。我们使用光导向的原位合成末端标记的微阵列来确定每个染料在所有 1024 种可能的 5'标记 5-mers 上的荧光强度。它们的强度对所有五个碱基都很敏感。5' 鸟嘌呤和后续位置的腺嘌呤会提高荧光强度。胞嘧啶会抑制荧光。Cy3 的荧光强度在所有 5-mers 的范围内下降一半,Cy5 的荧光强度下降三分之二。与直接末端标记相比,用 5'-生物素-链霉亲和素-Cy3/-Cy5 标记会产生完全不同的序列依赖性,并大大降低荧光强度。