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Interfacing click chemistry with automated oligonucleotide synthesis for the preparation of fluorescent DNA probes containing internal xanthene and cyanine dyes

机译:单击化学与自动寡核苷酸合成的接口化学,用于制备包含内部x吨和花青染料的荧光DNA探针

摘要

Double-labeled oligonucleotide probes containing fluorophores interacting by energy-transfer mechanisms are essential for modern bioanalysis, molecular diagnostics, and in vivo imaging techniques. Although bright xanthene and cyanine dyes are gaining increased prominence within these fields, little attention has thus far been paid to probes containing these dyes internally attached, a fact which is mainly due to the quite challenging synthesis of such oligonucleotide probes. Herein, by using 2'-O-propargyl uridine phosphoramidite and a series of xanthenes and cyanine azide derivatives, we have for the first time performed solid-phase copper(I)-catalyzed azide-alkyne cycloaddition (CuAAC) click labeling during the automated phosphoramidite oligonucleotide synthesis followed by postsynthetic click reactions in solution. We demonstrate that our novel strategy is rapid and efficient for the preparation of novel oligonucleotide probes containing internally positioned xanthene and cyanine dye pairs and thus represents a significant step forward for the preparation of advanced fluorescent oligonucleotide probes. Furthermore, we demonstrate that the novel xanthene and cyanine labeled probes display unusual and very promising photophysical properties resulting from energy-transfer interactions between the fluorophores controlled by nucleic acid assembly. Potential benefits of using these novel fluorescent probes within, for example, molecular diagnostics and fluorescence microscopy include: Considerable Stokes shifts (40-110 nm), quenched fluorescence of single-stranded probes accompanied by up to 7.7-fold light-up effect of emission upon target DNA/RNA binding, remarkable sensitivity to single-nucleotide mismatches, generally high fluorescence brightness values (FB up to 26), and hence low limit of target detection values (LOD down to
机译:包含通过能量转移机制相互作用的荧光团的双标记寡核苷酸探针对于现代生物分析,分子诊断和体内成像技术至关重要。尽管明亮的x吨和花青染料在这些领域中越来越受到重视,但是迄今为止,对于内部连接有这些染料的探针几乎没有引起重视,这一事实主要是由于这种寡核苷酸探针的合成颇具挑战性。在此,通过使用2'-O-炔丙基尿嘧啶亚磷酰胺和一系列的黄嘌呤和花青叠氮化物衍生物,我们首次在自动化过程中进行了固相铜(I)催化的叠氮化物-炔烃环加成(CuAAC)点击标记亚磷酰胺寡核苷酸合成,然后在溶液中进行后合成点击反应。我们证明我们的新策略是快速和有效的制备包含内部定位的吨和花青染料对的新型寡核苷酸探针,因此代表了先进荧光寡核苷酸探针制备的重要一步。此外,我们证明了新颖的x吨和花青标记的探针显示出异常和非常有前途的光物理特性,这是由于核酸组装所控制的荧光团之间的能量转移相互作用所致。在分子诊断和荧光显微镜等领域使用这些新型荧光探针的潜在好处包括:相当大的斯托克斯位移(40-110 nm),单链探针的淬灭荧光以及高达7.7倍的发光发光效应在靶DNA / RNA结合后,对单核苷酸错配具有显着的敏感性,通常荧光亮度值较高(FB高达26),因此靶标检测值的下限很低(LOD最低至

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