Université de Lyon, CNRS, Université Claude Bernard Lyon 1, Institut des Sciences Analytiques, UMR 5280, 5 Rue de La Doua, F-69100, VILLEURBANNE, France.
Plateforme IMPReSs, CNRS UMR7242, Biotechnologie et Signalisation Cellulaire, Ecole Supérieure de Biotechnologie de Strasbourg, Illkirch, France.
Anal Chim Acta. 2020 May 29;1113:26-35. doi: 10.1016/j.aca.2020.03.062. Epub 2020 Apr 3.
Biophysical techniques that enable the screening and identification of weak affinity fragments against a target protein are at the heart of Fragment Based Drug Design approaches. In the case of membrane proteins, the crucial criteria for fragment screening are low protein consumption, unbiased conformational states and rapidity because of the difficulties in obtaining sufficient amounts of stable and functionally folded proteins. Here we show for the first time that lipid-nanodisc systems (membrane-mimicking environment) and miniaturized affinity chromatography can be combined to identify specific small molecule ligands that bind to an integral membrane protein. The approach was exemplified using the AAR GPCR. Home-made affinity nano-columns modified with nanodiscs-embedded AAR (only about 1 μg of protein per column) were fully characterized by frontal chromatographic experiments. This method allows (i) to distinguish specific and unspecific ligand/receptor interactions, (ii) to assess dissociation constants, (iii) to identify the binding pocket of uncharacterized ligands using a reference compound (whose binding site is known) with competition experiments. Weak affinity ligands with Kd in the low to high micromolar range can be detected. At last, the applicability of this method was demonstrated with 6 fragments recently identified as ligands or non-ligands of AAR.
基于片段的药物设计方法的核心是能够筛选和鉴定针对靶蛋白的弱亲和力片段的生物物理技术。在膜蛋白的情况下,片段筛选的关键标准是低蛋白消耗、无偏构象状态和快速性,因为获得足够数量的稳定和功能折叠蛋白存在困难。在这里,我们首次表明,脂质纳米盘系统(模拟膜环境)和微型亲和层析可以结合使用,以鉴定与整合膜蛋白结合的特定小分子配体。该方法使用 AAR GPCR 进行了举例说明。用嵌入 AAR 的纳米盘修饰的自制亲和纳米柱(每根柱仅约 1μg 蛋白)通过前沿层析实验进行了充分表征。该方法允许 (i) 区分特异性和非特异性配体/受体相互作用,(ii) 评估解离常数,(iii) 使用竞争实验通过参考化合物(其结合位点已知)鉴定未表征配体的结合口袋。可以检测到 Kd 在低至高微摩尔范围内的弱亲和力配体。最后,该方法的适用性通过最近鉴定为 AAR 的配体或非配体的 6 个片段得到了证明。