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首页> 外文期刊>Analytical and Bioanalytical Chemistry >Study of non-covalent interactions of luotonin A derivatives and the DNA minor groove as a first step in the study of their analytical potential as DNA probes
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Study of non-covalent interactions of luotonin A derivatives and the DNA minor groove as a first step in the study of their analytical potential as DNA probes

机译:研究萤光素A衍生物与DNA小沟的非共价相互作用是研究其作为DNA探针的分析潜力的第一步

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摘要

The interaction between DNA and several newly synthesized derivatives of the natural anticancer compound luotonin A has been studied. The results from our work reveal an effective and selective alkaloid/double-stranded DNA (ds-DNA) interaction. In the presence of increasing amounts of ds-DNA, a noticeable fluorescence quenching of the luotonin A derivatives under study was observed. However, this effect did not take place when single-stranded DNA (ss-DNA) was employed. The association constant alkaloids/ds-DNA was calculated by quantitation of such a quenching effect. The influence of other quenchers, namely Co2+ and Br− on the native fluorescence of luotonin A and derivatives was also studied, and a remarkable quenching effect was observed for both ions. We have also investigated how by binding DNA the alkaloids could get protected from the external Co2+ and Br− quenchers. The Stern–Volmer constants (K SV) for Co2+ and Br− quenching effect on the studied alkaloids were considerably reduced (10–50%) after incubation of the compounds in the presence of DNA with regard to the K SV values in absence of DNA. An increase in the fluorescence anisotropy values of luotonins was also produced only in the presence of ds-DNA but not in the case of ss-DNA. To better characterize the nature of that interaction, viscosimetry assays and ethidium bromide displacement studies were conducted. With regard to DNA reference solutions, the viscosity of solutions containing DNA and luotonin A derivatives was reduced or not significantly increased. It was also observed that the studied compounds were unable to displace the intercalating agent ethidium bromide. All of these results, together with the obtained association constants values (K ass = 2.2 × 102 – 1.3 × 103), support that neither covalent nor intercalating interactions luotonin A derivatives/ds-DNA are produced, leading to the conclusion that these alkaloids bind ds-DNA through the minor groove. The specific changes in the fluorescence behavior of luotonin A and derivatives distinguishing between ss-DNA and ds-DNA binding, lead us to propose these compounds as attractive turn-off probes to detect DNA hybridization.
机译:已经研究了DNA与天然抗癌化合物萤光素A的几种新合成衍生物之间的相互作用。我们工作的结果揭示了有效和选择性的生物碱/双链DNA(ds-DNA)相互作用。在存在增加量的ds-DNA的情况下,观察到正在研究的褪黑素A衍生物的显着荧光猝灭。但是,当使用单链DNA(ss-DNA)时,不会发生这种效果。通过定量这种猝灭作用来计算缔合常数生物碱/ ds-DNA。还研究了Co 2 + 和Br -等其他猝灭剂对荧光素A及其衍生物的天然荧光的影响,并且观察到两种离子均具有显着的猝灭效果。 。我们还研究了如何通过结合DNA来保护生物碱免受外部Co 2 + 和Br -猝灭剂的影响。 Co 2 + 和Br -对所研究生物碱的Stern-Volmer常数(K SV )(10–50 (%)在不存在DNA的情况下,在存在DNA的条件下孵育化合物的K SV 值。仅在ds-DNA存在下,而在ss-DNA情况下,荧光素的荧光各向异性值也增加。为了更好地表征这种相互作用的性质,进行了粘度测定法和溴化乙锭置换研究。关于DNA参考溶液,含有DNA和褪黑素A衍生物的溶液的粘度降低或没有明显增加。还观察到所研究的化合物不能代替嵌入剂溴化乙锭。所有这些结果以及所获得的关联常数值(K ass = 2.2×10 2 – 1.3×10 3 )均支持既没有产生共价相互作用也没有插层相互作用褪黑素A衍生物/ ds-DNA,导致得出以下结论:这些生物碱通过小沟结合ds-DNA。荧光素A和衍生物区分ss-DNA和ds-DNA结合的荧光行为的特定变化,使我们提出将这些化合物作为检测DNA杂交的诱人的关闭探针。

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