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Real-time monitoring of relative peptide-protein interaction strengths in the yeast two-hybrid system

机译:酵母双杂交系统中相对肽-蛋白质相互作用强度的实时监控

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摘要

The yeast two-hybrid (Y2H) system is one of the most technically straightforward, effective, and widely used tools for the discovery of the binary peptide or protein interactions. However, its exceptional detection sensitivity poses a serious challenge for affinity ranking and hence prioritizing the resultant large number of putative interactors for follow-up analyses. To overcome this apparent bottleneck, we describe here a novel yeast growth curve-based interaction-monitoring approach that permits semiautomatic quantification, comparison, and statistically ascertained scoring of a large collection of Y2H interactions under real-time conditions. Initially, we conducted a proof-of-concept test of five literature-validated peptide-protein interactions with known affinities in the low μM range, and subsequently used the method to classify 88 novel vitamin D receptor-binding peptides derived from high-throughput screening of a highly diverse artificial peptide aptamer library. Based on our in-depth data evaluation, we conclude that real-time monitoring of clone growth as a measure of relative binding strength offers a facile, cost-effective, accurate, reproducible, and further adaptable complement to standard Y2H-derived clone management.
机译:酵母双杂交(Y2H)系统是发现二元肽或蛋白质相互作用的技术上最直接,最有效和广泛使用的工具之一。但是,其出色的检测灵敏度对亲和力排序提出了严峻的挑战,因此要优先考虑由此产生的大量假定的相互作用子进行后续分析。为了克服这个明显的瓶颈,我们在这里描述了一种基于酵母生长曲线的新型相互作用监测方法,该方法允许在实时条件下对大量Y2H相互作用进行半自动定量,比较和统计确定的评分。最初,我们对低亲和力范围内已知亲和力的五种文献验证的肽-蛋白质相互作用进行了概念验证测试,随后使用该方法对源自高通量筛选的88种新型维生素D受体结合肽进行了分类高度多样化的人工肽适体文库的构建。根据我们的深入数据评估,我们得出结论,对克隆生长的实时监控(作为相对结合强度的量度)为标准的Y2H衍生克隆管理提供了简便,经济高效,准确,可重现和进一步适应的补充。

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