Okamoto Akimitsu, Kanatani Keiichiro, Saito Isao
Department of Synthetic Chemistry and Biological Chemistry, Faculty of Engineering, Kyoto University and SORST, Japan Science and Technology Corporation, Kyoto 615-8510, Japan.
J Am Chem Soc. 2004 Apr 21;126(15):4820-7. doi: 10.1021/ja039625y.
This paper describes the design of novel base-discriminating fluorescent (BDF) nucleobases and their application to single nucleotide polymorphism (SNP) typing. We devised novel BDF nucleosides, (Py)U and (Py)C, which contain a pyrenecarboxamide chromophore connected by a propargyl linker. The fluorescence spectrum of the duplex containing a (Py)U/A base pair showed a strong emission at 397 nm on 327 nm excitation. In contrast, the fluorescence of duplexes containing (Py)U/N base pairs (N = C, G, or T) was considerably weaker. The proposed structure of the duplex containing a matched (Py)U/A base pair suggests that the high polarity near the pyrenecarboxamide group is responsible for the strong A-selective fluorescence emission. Moreover, the fluorescence of the duplex containing a (Py)U/A base pair was not quenched by a flanking C/G base pair. The fluorescence properties are quite different from previous BDF nucleobases, where fluorescence is quenchable by flanking C/G base pairs. The duplex containing the C derivative, (Py)C, selectively emitted fluorescence when the base opposite (Py)C was G. The drastic change of fluorescence intensity by the nature of the complementary base is extremely useful for SNP typing. (Py)U- and (Py)C-containing oligodeoxynucleotides acted as effective reporter probes for homogeneous SNP typing of DNA samples containing c-Ha-ras and BRCA2 SNP sites.
本文描述了新型碱基区分荧光(BDF)核碱基的设计及其在单核苷酸多态性(SNP)分型中的应用。我们设计了新型BDF核苷,即(Py)U和(Py)C,它们含有通过炔丙基连接体连接的芘甲酰胺发色团。含有(Py)U/A碱基对的双链体在327nm激发下于397nm处显示出强烈发射。相比之下,含有(Py)U/N碱基对(N = C、G或T)的双链体的荧光则弱得多。所提出的含有匹配的(Py)U/A碱基对的双链体结构表明,芘甲酰胺基团附近的高极性是A选择性强荧光发射的原因。此外,含有(Py)U/A碱基对的双链体的荧光不会被侧翼的C/G碱基对淬灭。其荧光特性与先前的BDF核碱基有很大不同,在先前的BDF核碱基中,荧光可被侧翼的C/G碱基对淬灭。含有C衍生物(Py)C的双链体在与(Py)C互补的碱基为G时选择性地发出荧光。荧光强度因互补碱基性质而发生的剧烈变化对SNP分型极为有用。含有(Py)U和(Py)C的寡脱氧核苷酸可作为有效的报告探针,用于对含有c-Ha-ras和BRCA2 SNP位点的DNA样本进行均相SNP分型。