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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >On-bead screens sample narrower affinity ranges of protein-ligand interactions compared to equivalent solution assays
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On-bead screens sample narrower affinity ranges of protein-ligand interactions compared to equivalent solution assays

机译:与等效溶液分析相比,珠上筛选样品的蛋白质-配体相互作用亲和力范围更窄

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摘要

Conceptually, on-bead screening is one of the most efficient high-throughput screening(HTS) methods. One of its inherent advantages is that the solid support has a dual function: it serves as a synthesis platform and as a screening compartment. Compound purification, cleavage and storage and extensive liquid handling are not necessary in bead-based HTS. Since the establishment of one-bead one-compound library synthesis, the properties of polymer beads in chemical reactions have been thoroughly investigated. However, the characterization of the kinetics and thermodynamics of protein-ligand interactions on the beads used for screening has received much less attention. Consequently, the majority of reported on-bead screens are based on empirically derived procedures, independent of measured equilibrium constants and rate constants of protein binding to ligands on beads. More often than not, on-bead screens reveal apparent high affinity binders through strong protein complexation on the matrix of the solid support. After decoding, resynthesis, and solution testing the primary hits turn out to be unexpectedly weak binders, or may even fall out of the detection limit of the solution assay. Only a quantitative comparison of on-bead binding and solution binding events will allow systematically investigating affinity differences as function of protein and small molecule properties. This will open up routes for optimized bead materials, blocking conditions and other improved assay procedures. By making use of the unique features of our previously introduced confocal nanoscanning(CONA) method, we investigated the kinetic and thermodynamic properties of protein-ligand interactions on TentaGel beads, a popular solid support for on-bead screening. The data obtained from these experiments allowed us to determine dissociation constants for the interaction of bead-immobilized ligands with soluble proteins. Our results therefore provide, for the first time, a comparison of on-bead versus solution binding thermodynamics. Our data indicate that affinity ranges found in on-bead screening are indeed narrower compared to equivalent interactions in homogeneous solution. A thorough physico-chemical understanding of the molecular recognition between proteins and surface bound ligands will further strengthen the role of on-bead screening as an ultimately cost-effective method in hit and lead finding. Quick screening: Generally, protein-ligand interaction data for bead-immobilised and solid-supported small molecules are handled in the same way as solution interactions. Herein a framework is presented for biophysical characterization of protein-ligand interactions on TentaGel beads, including the determination of affinity constants for immobilized ligands(see picture).
机译:从概念上讲,磁珠筛选是最有效的高通量筛选(HTS)方法之一。它的固有优势之一是固体支持物具有双重功能:它可以用作合成平台和筛选室。在基于珠子的HTS中,无需进行化合物的纯化,裂解和储存以及大量的液体处理。自建立单珠单化合物文库合成以来,已经彻底研究了聚合物珠在化学反应中的性质。然而,用于筛选的珠子上蛋白质-配体相互作用的动力学和热力学的表征受到的关注很少。因此,大多数报道的珠上筛选都是基于经验推导的程序,与测得的平衡常数和与珠上配体结合的蛋白质的速率常数无关。珠子筛选通常会通过在固体支持物基质上的强蛋白络合来显示明显的高亲和力结合剂。解码,重新合成和溶液测试后,主要命中结果证明是出乎意料的弱结合物,甚至可能超出溶液测定的检测限。仅对珠上结合和溶液结合事件进行定量比较,才能系统地研究作为蛋白质和小分子特性的函数的亲和力差异。这将为优化珠粒材料,封闭条件和其他改进的测定程序开辟途径。通过利用我们先前介绍的共聚焦纳米扫描(CONA)方法的独特功能,我们研究了TentaGel珠上的蛋白质-配体相互作用的动力学和热力学性质,TentaGel珠是珠上筛选的流行固体支持物。从这些实验中获得的数据使我们能够确定固定化珠子的配体与可溶性蛋白质相互作用的解离常数。因此,我们的结果首次提供了磁珠与溶液结合热力学的比较。我们的数据表明,与均匀溶液中的等效相互作用相比,在珠子筛选中发现的亲和力范围确实更窄。对蛋白质与表面结合的配体之间的分子识别的透彻的理化理解将进一步加强珠子筛选的作用,将其作为在命中和线索发现中最终具有成本效益的方法。快速筛选:通常,固定化珠子和固相支持的小分子的蛋白质-配体相互作用数据以与溶液相互作用相同的方式处理。本文提供了一个框架,用于生物物理表征TentaGel珠上的蛋白质-配体相互作用,包括确定固定配体的亲和常数(参见图片)。

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