测定核受体配体结合亲和力的有限蛋白水解。

Receptors & signal transduction Pub Date : 1997-01-01
M Benkoussa, B Nominé, A Mouchon, B Lefebvre, J M Bernardon, P Formstecher, P Lefebvre
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引用次数: 0

摘要

天然或合成配体与核受体的结合是导致基因转录激活或抑制的触发事件。配体结合到这些受体的配体结合结构域诱导构象变化,这可以通过该结构域对蛋白酶的抗性增加来证明。体外标记受体与各种合成或天然激动剂或拮抗剂孵育,并提交胰蛋白酶消化。蛋白水解产物通过SDS-PAGE分离并定量。胰蛋白酶抗性片段的数量与配体的受体占用成正比,并允许解离常数(kDa)的测定。使用野生型或突变的人视黄酸受体α作为模型,使用氚化配体的经典竞争结合测定法测定的kDa值与蛋白水解测定法测定的值一致。该方法成功地扩展到人视黄酮X受体α、糖皮质激素受体和孕酮受体,从而为一种新的、更快的测定受体与给定配体结合时的亲和力和构象的方法提供了基础。
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Limited proteolysis for assaying ligand binding affinities of nuclear receptors.

The binding of natural or synthetic ligands to nuclear receptors is the triggering event leading to gene transcription activation or repression. Ligand binding to the ligand binding domain of these receptors induces conformational changes that are evidenced by an increased resistance of this domain to proteases. In vitro labeled receptors were incubated with various synthetic or natural agonists or antagonists and submitted to trypsin digestion. Proteolysis products were separated by SDS-PAGE and quantified. The amount of trypsin-resistant fragments was proportional to receptor occupancy by the ligand, and allowed the determination of dissociation constants (kDa). Using the wild-type or mutated human retinoic acid receptor alpha as a model, kDa values determined by classical competition binding assays using tritiated ligands are in agreement with those measured by the proteolytic assay. This method was successfully extended to human retinoic X receptor alpha, glucocorticoid receptor, and progesterone receptor, thus providing a basis for a new, faster assay to determine simultaneously the affinity and conformation of receptors when bound to a given ligand.

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