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Micropatterning for quantitative analysis of protein-protein interactions in living cells

机译:显微图案定量分析活细胞中蛋白质间相互作用

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摘要

We present a method to identify and characterize interactions between a fluorophore-labeled protein ('prey') and a membrane protein ('bait') in live mammalian cells. Cells are plated on micropatterned surfaces functionalized with antibodies to the bait extracellular domain. Bait-prey interactions are assayed through the redistribution of the fluorescent prey. We used the method to characterize the interaction between human CD4, the major co-receptor in T-cell activation, and human Lck, the protein tyrosine kinase essential for early T-cell signaling. We measured equilibrium associations by quantifying Lck redistribution to CD4 micropatterns and studied interaction dynamics by photobleaching experiments and single-molecule imaging. In addition to the known zinc clasp structure, the Lck membrane anchor in particular had a major impact on the Lck-CD4 interaction, mediating direct binding and further stabilizing the interaction of other Lck domains. In total, membrane anchorage increased the interaction lifetime by two orders of magnitude.
机译:我们提出了一种方法来鉴定和表征活的哺乳动物细胞中荧光团标记的蛋白质(“猎物”)和膜蛋白(“诱饵”)之间的相互作用。将细胞接种在微图案化的表面上,该表面用针对诱饵胞外域的抗体功能化。通过荧光猎物的重新分布分析诱饵-猎物的相互作用。我们使用该方法来表征人CD4(T细胞活化中的主要辅助受体)与人Lck(早期T细胞信号转导所必需的蛋白质酪氨酸激酶)之间的相互作用。我们通过量化Lck重新分布到CD4微型模式来测量平衡缔合,并通过光漂白实验和单分子成像研究了相互作用动力学。除了已知的锌扣结构之外,Lck膜锚尤其对Lck-CD4相互作用有重要影响,介导直接结合并进一步稳定其他Lck结构域的相互作用。总的来说,膜锚固将相互作用寿命增加了两个数量级。

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