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扩展弱亲和层析的亲和力范围,以鉴定靶向膜蛋白的弱配体。

Extending the Affinity Range of Weak Affinity Chromatography for the Identification of Weak Ligands Targeting Membrane Proteins.

机构信息

Institut des Sciences Analytique, Universite Claude Bernard Lyon 1, ISA UMR 5280, CNRS, 5 Rue de la Doua, 69100 Villeurbanne, France.

Plateforme IMPReSs, CNRS UMR7242, Biotechnologie et Signalisation Cellulaire, Ecole Supérieure de Biotechnologie de Strasbourg, 67400 Illkirch, France.

出版信息

Molecules. 2023 Oct 16;28(20):7113. doi: 10.3390/molecules28207113.

Abstract

The identification of weak-affinity ligands targeting membrane proteins is of great interest in Fragment-Based Drug Design (FBDD). Recently, miniaturized weak affinity chromatography (WAC) has been proposed as a valuable tool to study interactions between small ligands and wild-type membrane proteins embedded in so-called nanodisc biomimetic membranes immobilized on GMA-co-EDMA monoliths in situ-synthesized in capillary columns (less than one microliter in volume). In this proof-of-concept study, the achievable affinity range was limited to medium affinity (low micromolar range). The present work investigates different strategies to extend the affinity range towards low affinities, either by increasing the density of membrane proteins on the chromatographic support or by reducing non-specific interactions with the monolith. The combination of the use of a new and more hydrophilic monolithic support (poly(DHPMA-co-MBA)) and a multilayer nanodisc grafting process (up to three layers) allows a significant increase in the membrane protein density by a more than three-fold factor (up to 5.4 pmol cm). Such an increase in protein density associated with reduced non-specific interactions makes it possible to extend the range of detectable affinity, as demonstrated by the identification and characterization of affinities of very low-affinity ligands (Kd values of several hundred micromolar) for the adenosine receptor AAR used as a model protein, which was not possible before. The affinity was confirmed by competition experiments.

摘要

针对膜蛋白的弱亲和力配体的鉴定在基于片段的药物设计 (FBDD) 中非常重要。最近,小型弱亲和色谱 (WAC) 已被提议作为一种有价值的工具,用于研究小分子配体与嵌入所谓的纳米盘仿生膜中的野生型膜蛋白之间的相互作用,这些纳米盘仿生膜固定在原位合成的在毛细管柱中的 GMA-co-EDMA 整体式 (体积小于 1 微升) 上。在这项概念验证研究中,可实现的亲和力范围仅限于中等亲和力(低微摩尔范围)。本工作研究了不同的策略来扩展亲和力范围以达到低亲和力,方法是增加色谱支持物上的膜蛋白密度或减少与整体式的非特异性相互作用。使用新的和更亲水的整体式支持物 (聚(DHPMA-co-MBA)) 和多层纳米盘接枝过程(多达三层)的组合允许通过超过三倍的因子(高达 5.4 pmol cm)来显著增加膜蛋白密度。这种蛋白质密度的增加与非特异性相互作用的减少相结合,使得可以扩展可检测亲和力的范围,如通过鉴定和表征用作模型蛋白的腺苷受体 AAR 的非常低亲和力配体(Kd 值为数百微摩尔)的亲和力来证明,这在以前是不可能的。通过竞争实验证实了亲和力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6445/10608817/bce3190f1ed1/molecules-28-07113-g001.jpg

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