Department of Medicine, Division of Diabetes, Endocrinology and Metabolism, Vanderbilt University Medical Center, Nashville, Tennessee 37232, United States.
Department of Biochemistry and Department of Pharmacology, Vanderbilt University School of Medicine, Nashville, Tennessee 37232, United States.
ACS Chem Biol. 2023 May 19;18(5):1101-1114. doi: 10.1021/acschembio.2c00805. Epub 2023 Apr 19.
Nuclear receptor liver receptor homolog-1 (LRH-1, ) is a lipid-regulated transcription factor and an important drug target for several liver diseases. Advances toward LRH-1 therapeutics have been driven recently by structural biology, with fewer contributions from compound screening. Standard LRH-1 screens detect compound-induced interaction between LRH-1 and a transcriptional coregulator peptide, an approach that excludes compounds that regulate LRH-1 through alternative mechanisms. Here, we developed a FRET-based LRH-1 screen that simply detects compound binding to LRH-1, applying it to discover 58 new compounds that bind the canonical ligand-binding site in LRH-1 (2.5% hit rate), also supported by computational docking. Four independent functional screens identified 15 of these 58 compounds to also regulate LRH-1 function in vitro or in living cells. Although one of these 15 compounds, abamectin, directly binds LRH-1 and regulates full-length LRH-1 in cells, abamectin failed to regulate the isolated ligand-binding domain in standard coregulator peptide recruitment assays using PGC1α, DAX-1, or SHP. Abamectin treatment of human liver HepG2 cells selectively regulated endogenous LRH-1 ChIP-seq target genes and pathways associated with known LRH-1 functions in bile acid and cholesterol metabolism. Thus, the screen reported here can discover compounds not likely to have been identified in standard LRH-1 compound screens but which bind and regulate full-length LRH-1 in cells.
核受体肝受体同系物-1(LRH-1,)是一种受脂质调节的转录因子,也是几种肝脏疾病的重要药物靶点。最近,结构生物学的进展推动了 LRH-1 治疗方法的发展,而化合物筛选的贡献较少。标准的 LRH-1 筛选检测化合物诱导的 LRH-1 与转录共激活肽之间的相互作用,这种方法排除了通过替代机制调节 LRH-1 的化合物。在这里,我们开发了一种基于 FRET 的 LRH-1 筛选方法,该方法仅检测化合物与 LRH-1 的结合,应用该方法发现了 58 种新的化合物与 LRH-1 的经典配体结合位点结合(2.5%的命中率),这也得到了计算对接的支持。四个独立的功能筛选鉴定出这 58 种化合物中的 15 种也可在体外或活细胞中调节 LRH-1 功能。尽管这 15 种化合物中的一种,阿维菌素,直接与 LRH-1 结合并在细胞中调节全长 LRH-1,但阿维菌素在使用 PGC1α、DAX-1 或 SHP 的标准共激活肽招募测定中未能调节分离的配体结合域。阿维菌素处理人肝 HepG2 细胞选择性调节内源性 LRH-1 ChIP-seq 靶基因和与胆汁酸和胆固醇代谢中已知 LRH-1 功能相关的途径。因此,这里报道的筛选可以发现不太可能在标准 LRH-1 化合物筛选中被识别的化合物,但这些化合物在细胞中结合并调节全长 LRH-1。