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Yeast Surface Two-hybrid for Quantitative in Vivo Detection of Protein-Protein Interactions via the Secretory Pathway

机译:酵母表面两杂交体通过分泌途径定量检测蛋白质与蛋白质的相互作用

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摘要

A quantitative in vivo method for detecting protein-protein interactions will enhance our understanding of protein interaction networks and facilitate affinity maturation as well as designing new interaction pairs. We have developed a novel platform, dubbed “yeast surface two-hybrid (YS2H),” to enable a quantitative measurement of pairwise protein interactions via the secretory pathway by expressing one protein (bait) anchored to the cell wall and the other (prey) in soluble form. In YS2H, the prey is released either outside of the cells or remains on the cell surface by virtue of its binding to the bait. The strength of their interaction is measured by antibody binding to the epitope tag appended to the prey or direct readout of split green fluorescence protein (GFP) complementation. When two α-helices forming coiled coils were expressed as a pair of prey and bait, the amount of the prey in complex with the bait progressively decreased as the affinity changes from 100 pm to 10 μm. With GFP complementation assay, we were able to discriminate a 6-log difference in binding affinities in the range of 100 pm to 100 μm. The affinity estimated from the level of antibody binding to fusion tags was in good agreement with that measured in solution using a surface plasmon resonance technique. In contrast, the level of GFP complementation linearly increased with the on-rate of coiled coil interactions, likely because of the irreversible nature of GFP reconstitution. Furthermore, we demonstrate the use of YS2H in exploring the nature of antigen recognition by antibodies and activation allostery in integrins and in isolating heavy chain-only antibodies against botulinum neurotoxin.
机译:用于检测蛋白质-蛋白质相互作用的定量体内方法将增进我们对蛋白质相互作用网络的理解,并促进亲和力成熟以及设计新的相互作用对。我们开发了一个新颖的平台,称为“酵母表面两杂交(YS2H)”,通过表达一种锚定在细胞壁上的蛋白质(诱饵)和另一种(猎物)锚定的蛋白质(诱饵),可以通过分泌途径对成对的蛋白质相互作用进行定量测量。以可溶形式存在。在YS2H中,猎物由于与诱饵的结合而释放到细胞外部或留在细胞表面。它们相互作用的强度是通过抗体与表位标签结合的抗体来衡量的,该表位标签附于猎物或直接读出分裂的绿色荧光蛋白(GFP)互补序列。当将形成盘绕线圈的两个α螺旋表示为一对猎物和诱饵时,随着亲和力从100 pm变为10μm,与诱饵配合的猎物数量逐渐减少。通过GFP互补分析,我们能够辨别100 pm至100μm范围内结合亲和力的6个对数差异。从抗体结合融合标签的水平估计的亲和力与使用表面等离子体共振技术在溶液中测得的亲和力非常一致。相反,GFP互补水平随卷曲螺旋相互作用的开通率线性增加,这可能是由于GFP重组的不可逆性所致。此外,我们证明了YS2H在探索通过抗体识别抗原和在整联蛋白中激活变构物以及分离针对肉毒杆菌神经毒素的仅重链抗体的本质。

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