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A novel molecular rotor facilitates detection of p53-DNA interactions using the Fluorescent Intercalator Displacement Assay

机译:新型分子转子可使用荧光嵌入剂位移测定法促进对p53-DNA相互作用的检测

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摘要

We have investigated the use of fluorescent molecular rotors as probes for detection of p53 binding to DNA. These are a class of fluorophores that undergo twisted intramolecular charge transfer (TICT). They are non-fluorescent in a freely rotating conformation and experience a fluorescence increase when restricted in the planar conformation. We hypothesized that intercalation of a molecular rotor between DNA base pairs would result in a fluorescence turn-on signal. Upon displacement by a DNA binding protein, measurable loss of signal would facilitate use of the molecular rotor in the fluorescent intercalator displacement (FID) assay. A panel of probes was interrogated using the well-established p53 model system across various DNA response elements. A novel, readily synthesizable molecular rotor incorporating an acridine orange DNA intercalating group (AO-R) outperformed other conventional dyes in the FID assay. It enabled relative measurement of p53 sequence-specific DNA interactions and study of the dominant-negative effects of cancer-associated p53 mutants. In a further application, AO-R also proved useful for staining apoptotic cells in live zebrafish embryos.
机译:我们已经研究了使用荧光分子转子作为探针来检测p53与DNA的结合。这些是经历扭曲的分子内电荷转移(TICT)的荧光团。它们在自由旋转的构象中是非荧光的,并且当在平面构象中受到限制时会经历荧光的增加。我们假设DNA碱基对之间插入分子转子会导致荧光开启信号。在被DNA结合蛋白置换后,可测量的信号丢失将促进分子转子在荧光嵌入剂置换(FID)分析中的使用。使用公认的p53模型系统对各种DNA响应元件进行探询。在FID分析中,掺入incorporating啶橙DNA嵌入基团(AO-R)的新颖,易于合成的分子转子性能优于其他常规染料。它能够相对测量p53序列特异性DNA相互作用,并研究与癌症相关的p53突变体的显性负效应。在进一步的应用中,AO-R还被证明可用于染色活斑马鱼胚胎中的凋亡细胞。

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