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Homogeneous Assays of Second Messenger Signaling and Hormone Secretion Using Thermofluorimetric Methods That Minimize Calibration Burden

机译:使用最小化校准负担的热荧光法对第二信使信号和激素分泌进行均相测定

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摘要

Homogeneous assays are characterized by rapidity, low cost, and simple workflows. However, relatively few specialized homogeneous platforms have garnered significant use in biological studies. Inconsistencies in matrix interferences, limited multiplexability, and the requirement for specialized instrumentation are among the various reasons for delayed acceptance. Recently, we have shown that DNA-driven protein assays using thermofluorimetric analysis (TFA) can limit matrix interference and promote multiplexing, all while requiring only a standard qPCR instrument for readout. Here, we show that homogeneous, one step (mix-and-read) TFA methods can be extended to the analysis of both a small molecule second messenger, cyclic adenosine monophosphate (cAMP), and a downstream cell-secreted hormone, insulin. Differential thermal analysis of DNA melting in these assays allowed analytical discrimination of background and signal without physical separation. The direct-readout, differential nature of TFA also promoted assay consistency and minimized calibration burden; analyte response curves were shown to be highly repeatable for up to 7 months. TFA protocols were validated by homogeneous quantification of both cAMP and insulin from single pancreatic islets undergoing a variety of treatments (glucose, KCl, glucose-responsive insulinotropic peptide (GIP), forskolin) that act upon glucose transporters, potassium and calcium channels, and G-protein-coupled receptors to modulate exocytosis. The results of this study suggest that TFA should be applicable to homogeneous quantification of a variety of small molecule messengers and protein analytes with standard instrumentation, thereby simplifying workflows in studies of cell-signaling cascades.
机译:均相检测的特点是快速,低成本和简单的工作流程。但是,相对较少的专业同类平台已经在生物学研究中获得了重要应用。矩阵干扰的不一致性,有限的复用性以及对专用仪器的要求是延迟验收的各种原因。最近,我们已经表明,使用热荧光分析(TFA)进行的DNA驱动的蛋白质测定可以限制基质干扰并促进多路复用,而同时仅需要标准的qPCR仪器即可读出。在这里,我们表明,同质,一步(混合阅读)TFA方法可以扩展到小分子第二信使,环磷酸腺苷(cAMP)和下游细胞分泌激素胰岛素的分析。在这些测定中,DNA融解的差示热分析允许对背景和信号进行分析区分,而无需物理分离。 TFA的直接读数,差异性质也提高了测定的一致性,并最小化了校准负担;分析物响应曲线显示了长达7个月的高度可重复性。通过对单一胰岛中的cAMP和胰岛素进行均相定量来验证TFA方案,该胰岛经过多种处理(作用于葡萄糖转运蛋白,钾和钙通道,G -蛋白偶联受体调节胞吐作用。这项研究的结果表明,TFA应该适用于使用标准仪器对各种小分子信使和蛋白质分析物进行均相定量,从而简化了细胞信号级联研究的工作流程。

著录项

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  • 作者

    Juan Hu; Christopher J. Easley;

  • 作者单位
  • 年(卷),期 -1(89),16
  • 年度 -1
  • 页码 8517–8523
  • 总页数 18
  • 原文格式 PDF
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