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A three-hybrid system for detecting small ligand–protein receptor interactions

机译:用于检测小配体-蛋白质的三杂化系统 受体相互作用

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摘要

Small ligand–receptor interactions underlie many fundamental processes in biology and form the basis for pharmacological intervention of human diseases in medicine. We report herein a genetic system, named the yeast three-hybrid system, for detecting ligand–receptor interactions in vivo. This system is adapted from the yeast two-hybrid system with which a third synthetic hybrid ligand is combined. The feasibility of this system was demonstrated using as the hybrid ligand a heterodimer of covalently linked dexamethasone and FK506. Yeast expressing fusion proteins of the hormone binding domain of the rat glucocorticoid receptor fused to the LexA DNA-binding domain and of FKBP12 fused to a transcriptional activation domain activated reporter genes when plated on medium containing the dexamethasone–FK506 heterodimer. The reporter gene activation is completely abrogated in a competitive manner by the presence of excess FK506. Using this system, we screened a Jurkat cDNA library fused to the transcriptional activation domain in yeast expressing the hormone binding domain of rat glucocorticoid receptor–LexA DNA binding domain fusion protein in the presence of dexamethasone–FK506 heterodimer. We isolated overlapping clones of human FKBP12. These results demonstrate that the three-hybrid system can be used to discover receptors for small ligands and to screen for new ligands to known receptors.
机译:小的配体-受体相互作用是生物学中许多基本过程的基础,并构成了人类疾病在医学上进行药理干预的基础。我们在这里报告了一种遗传系统,称为酵母三杂交系统,用于检测体内的配体-受体相互作用。该系统改编自酵母双杂交系统,该系统与第三种合成杂交配体结合在一起。使用共价连接的地塞米松和FK506的异二聚体作为杂合配体证明了该系统的可行性。当接种于含有地塞米松-FK506异二聚体的培养基中时,酵母表达的大鼠糖皮质激素受体的激素结合结构域与LexA DNA结合结构域融合,而FKBP12的融合蛋白与转录激活域融合。过量FK506的存在以竞争性方式完全消除了报告基因的激活。使用该系统,我们筛选了与酵母中转录激活域融合的Jurkat cDNA文库,该转录表达域表达了大鼠糖皮质激素的激素结合域 存在下的受体–LexA DNA结合域融合蛋白 地塞米松– FK506异二聚体。我们分离了的重叠克隆 人类FKBP12。这些结果证明了三杂化系统 可用于发现小配体的受体并筛选 已知受体的新配体。

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