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Imaging Protein–Protein Interactions inside Living Cells via Interaction-Dependent Fluorophore Ligation

机译:通过相互作用依赖的荧光团结扎成像活细胞内的蛋白质 - 蛋白质相互作用

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摘要

We report a new method, Interaction-Dependent PRobe Incorporation Mediated by Enzymes, or ID-PRIME, for imaging protein–protein interactions (PPIs) inside living cells. ID-PRIME utilizes a mutant of Escherichia coli lipoic acid ligase, LplA[superscript W37V], which can catalyze the covalent ligation of a coumarin fluorophore onto a peptide recognition sequence called LAP1. The affinity between the ligase and LAP1 is tuned such that, when each is fused to a protein partner of interest, LplA[superscript W37V] labels LAP1 with coumarin only when the protein partners to which they are fused bring them together. Coumarin labeling in the absence of such interaction is low or undetectable. Characterization of ID-PRIME in living mammalian cells shows that multiple protein–protein interactions can be imaged (FRB–FKBP, Fos–Jun, and neuroligin–PSD-95), with as little as 10 min of coumarin treatment. The signal intensity and detection sensitivity are similar to those of the widely used fluorescent protein complementation technique (BiFC) for PPI detection, without the disadvantage of irreversible complex trapping. ID-PRIME provides a powerful and complementary approach to existing methods for visualization of PPIs in living cells with spatial and temporal resolution.
机译:我们报告了一种新方法,即由酶介导的相互作用依赖性PRobe掺入或ID-PRIME,用于对活细胞内部的蛋白-蛋白相互作用(PPI)进行成像。 ID-PRIME利用大肠杆菌硫辛酸连接酶LplA [上标W37V]的突变体,该突变体可以将香豆素荧光团共价连接到称为LAP1的肽识别序列上。调节连接酶和LAP1之间的亲和力,以便在将每个融合蛋白与目标蛋白伴侣融合时,仅当与它们融合的蛋白伴侣将LplA [上标W37V]与香豆素一起标记LAP1。在没有这种相互作用的情况下,香豆素标记很少或无法检测到。活哺乳动物细胞中ID-PRIME的表征表明,只需短短10分钟的香豆素处理,即可对多种蛋白质-蛋白质相互作用进行成像(FRB-FKBP,Fos-Jun和Neuroligin-PSD-95)。信号强度和检测灵敏度与用于PPI检测的广泛使用的荧光蛋白互补技术(BiFC)相似,但没有不可逆的复杂捕获的缺点。 ID-PRIME为现有方法的功能强大和补充性提供了可视化的空间和时间分辨率的活细胞中的PPI。

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