1 Department of Molecular and Cell Biology, University of Connecticut at Storrs, Storrs, CT, USA.
SLAS Discov. 2019 Jul;24(6):682-692. doi: 10.1177/2472555219830086. Epub 2019 Feb 25.
Intramolecular CFP-YFP fluorescence resonance energy transfer (FRET) sensors expressed in cells are powerful research tools but have seen relatively little use in screening. We exploited the discovery that the expression of a CFP-YFP FRET diacylglycerol sensor (DAGR) increases over time when cells are incubated at room temperature to assess requirements for robust measurements using a Molecular Devices Spectramax i3x fluorescence plate reader. Expression levels resulting in YFP fluorescence >10-fold higher than untransfected cells and phorbol ester-stimulated FRET ratio changes of 60% or more were required to consistently give robust Z' > 0.5. As a means of confirming that these conditions are suitable for screening, we developed a novel multiple-read protocol to assay the NCI's Mechanistic Set III for agonists and antagonists of C1 domain activation. Sixteen compounds prevented C1 domain translocation. However, none blocked phorbol ester-stimulated protein kinase C (PKC) activity assessed using a phospho-specific antibody-six actually stimulated PKC activity. Cytometry, which produces higher Z' for a given FRET ratio change, might have been a better approach for discovering antagonists, as it would have allowed lower phorbol ester concentrations to be used. We conclude that CFP-YFP FRET measured in a Spectramax i3x plate reader can be used for screening under the conditions we defined. Our strategy of varying expression level and FRET ratio could be useful to others for determining conditions needed for robust cell-based intramolecular CFP-YFP FRET measurements on their instrumentation.
细胞内表达的分子内 CFP-YFP 荧光共振能量转移 (FRET) 传感器是强大的研究工具,但在筛选中相对较少使用。我们利用了一个发现,即在室温下孵育细胞时,CFP-YFP FRET 二酰基甘油传感器 (DAGR) 的表达随时间增加,利用 Molecular Devices Spectramax i3x 荧光板读数仪评估稳健测量的要求。需要表达水平使 YFP 荧光比未转染细胞高 10 倍以上,并且需要 phorbol 酯刺激的 FRET 比变化 60%或更高,才能始终给出稳健的 Z' > 0.5。作为确认这些条件适合筛选的一种手段,我们开发了一种新的多次读取方案,用于测定 NCI 的机制集 III 中 C1 结构域激活的激动剂和拮抗剂。十六种化合物阻止了 C1 结构域易位。然而,没有一种化合物能阻止使用磷酸化特异性抗体评估的佛波酯刺激的蛋白激酶 C (PKC) 活性——实际上有六种化合物刺激了 PKC 活性。细胞计数可能是发现拮抗剂的更好方法,因为它可以允许使用更低浓度的佛波酯。我们得出结论,在我们定义的条件下,Spectramax i3x 平板读数仪中测量的 CFP-YFP FRET 可用于筛选。我们改变表达水平和 FRET 比的策略可能对其他人在他们的仪器上进行稳健的基于细胞的分子内 CFP-YFP FRET 测量确定所需的条件有用。