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TEMPERATURE END QUENCHING STUDIES OF FLUORESCENCE POLARIZATION DETECTION OF DNA HYBRIDIZATION

机译:DNA杂交荧光极化检测的温度末端猝灭研究。

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The effects of temperature and collisional quenching on fluorescence polarization detection of DNA hybridization were studied using measurements of fluorescence intensity and anisotropy and the dynamic decay of these properties. Three different tethers, 3, 6, and 12 carbons in length, were used to attach fluorescein label to the 5' end of the 33-base oligomers. Perrin plots showed that the effective rotating volume decreases with increasing tether length and approximately doubles upon hybridization. Hybridization increases the association between the tethered dye and the DNA for the shorter tethers but displaces the fluorescein on the 12C tether from the DNA, forcing it into greater contact with the bulk solution. The 6C tether appears to promote sequence-specific interaction between fluorescein label and the oligomer, which caused unexpectedly protection from collisional quenching. In all cases, there appear to exist several possible conformations for the tethered fluorescein. As temperature is increased, these conformations tend to collapse into a single, average or preferred, conformation. The results demonstrate the importance of the selection of tether, dye, and DNA probe in designing a polarization strategy for detection of DNA hybridization, particularly with respect to tether length and DNA probe sequence.
机译:通过测量荧光强度和各向异性以及这些特性的动态衰减,研究了温度和碰撞猝灭对DNA杂交的荧光偏振检测的影响。使用三种不同的系链(长度分别为3、6和12个碳)将荧光素标记附着到33个碱基的低聚物的5'末端。 Perrin图显示有效旋转体积随系链长度的增加而减少,杂交后大约翻倍。杂交增加了较短的系链的系留染料与DNA之间的缔合,但从DNA置换了12C系链上的荧光素,迫使其与主体溶液更多接触。 6C系链似乎促进了荧光素标记和低聚物之间的序列特异性相互作用,从而意外地引起了碰撞猝灭的保护。在所有情况下,对于束缚的荧光素似乎都存在几种可能的构象。随着温度升高,这些构象趋向于崩溃成单一的,平均的或优选的构象。结果表明选择系链,染料和DNA探针对于设计用于检测DNA杂交的极化策略的重要性,特别是在系链长度和DNA探针序列方面。

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