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Development of a homogeneous assay format for p53 antibodies using fluorescence correlation spectroscopy

机译:使用荧光相关光谱法开发P53抗体的均相测定格式

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The development of reliable methods for the detection of minute amounts of antibodies directly in homogeneous solution represents one of the major tasks in the current research field of molecular diagnostics. We demonstrate the potential of fluorescence correlation spectroscopy (FCS) in combination with quenched peptide-based fluorescence probes for sensitive detection of p53 antibodies directly in homogeneous solution. Single tryptophan (Trp) residues in the sequences of short, synthetic peptide epitopes of the human p53 protein efficiently quench the fluorescence of an oxazine fluorophore attached to the amino terminal ends of the peptides. The fluorescence quenching mechanism is thought to be a photoinduced electron transfer reaction from Trp to the dye enabled by the formation of intramolecular complexes between dye and Trp. Specific recognition of the epitope by the antibody confines the conformational flexibility of the peptide. Consequently, complex formation between dye and Trp is abolished and fluorescence is recovered. Using fluorescence correlation spectroscopy (FCS), antibody binding can be monitored observing two parameters simultaneously: the diffusional mobility of the peptide as well as the quenching amplitude induced by the conformational flexibility of the peptide change significantly upon antibody binding. Our data demonstrate that FCS in combination with fluorescence-quenched peptide epitopes opens new possibilities for the reliable detection of antibody binding events in homogeneous solution.
机译:直接在均质解决方案中检测微量抗体的可靠方法的开发代表了当前研究领域的分子诊断的主要任务之一。我们展示了荧光相关光谱(Fcs)与淬火肽基荧光探针组合的潜力,用于直接在均相溶液中敏感检测P53抗体。单个色氨酸(TRP)残留在人P53蛋白的短,合成肽表位的序列中有效地淬灭连接到肽的氨基末端的恶唑荧光团的荧光。荧光猝灭机理被认为是从TRP到染料的光突出的电子转移反应,通过在染料和TRP之间形成分子内复合物而实现。抗体对表位的特异性识别限制了肽的构象柔韧性。因此,废除染料和TRP之间的复杂形成,回收荧光。使用荧光相关光谱(FCS),可以同时监测抗体结合:肽的扩散迁移率以及通过肽的构象柔韧性诱导的猝死在抗体结合上显着变化。我们的数据表明FCS与荧光淬火肽表位相结合,使得可靠地检测均匀溶液中的抗体结合事件的新可能性。

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