Zerio Christopher J, Sivinski Jared, Wijeratne E M Kithsiri, Xu Ya-Ming, Ngo Duc T, Ambrose Andrew J, Villa-Celis Luis, Ghadirian Niloofar, Clarkson Michael W, Zhang Donna D, Horton Nancy C, Gunatilaka A A Leslie, Fromme Raimund, Chapman Eli
College of Pharmacy, Department of Pharmacology and Toxicology, University of Arizona, 1703 E. Mabel Street, PO Box 210207, Tucson, Arizona 85721, United States.
College of Agriculture and Life Sciences, School of Natural Resources and the Environment, Southwest Center for Natural Products Research, University of Arizona, 250 E. Valencia Road, Tucson, Arizona 85706, United States.
J Med Chem. 2023 Jan 12;66(1):913-933. doi: 10.1021/acs.jmedchem.2c01770. Epub 2022 Dec 28.
A pulldown using a biotinylated natural product of interest in the 17β-hydroxywithanolide (17-BHW) class, physachenolide C (PCC), identified the bromodomain and extra-terminal domain (BET) family of proteins (BRD2, BRD3, and BRD4), readers of acetyl-lysine modifications and regulators of gene transcription, as potential cellular targets. BROMOscan bromodomain profiling and biochemical assays support PCC as a BET inhibitor with increased selectivity for bromodomain (BD)-1 of BRD3 and BRD4, and X-ray crystallography and NMR studies uncovered specific contacts that underlie the potency and selectivity of PCC toward BRD3-BD1 over BRD3-BD2. PCC also displays characteristics of a molecular glue, facilitating proteasome-mediated degradation of BRD3 and BRD4. Finally, PCC is more potent than other withanolide analogues and gold-standard pan-BET inhibitor (+)-JQ1 in cytotoxicity assays across five prostate cancer (PC) cell lines regardless of androgen receptor (AR)-signaling status.
使用生物素化的17β-羟基睡茄内酯(17-BHW)类天然产物、酸浆醇内酯C(PCC)进行的下拉实验,确定了蛋白质的溴结构域和额外末端结构域(BET)家族(BRD2、BRD3和BRD4),即乙酰赖氨酸修饰的识别蛋白和基因转录调节因子,为潜在的细胞靶点。BROMOscan溴结构域分析和生化分析支持PCC作为一种BET抑制剂,对BRD3和BRD4的溴结构域(BD)-1具有更高的选择性,并且X射线晶体学和核磁共振研究揭示了PCC对BRD3-BD1比对BRD3-BD2具有效力和选择性的特定相互作用。PCC还表现出分子胶的特性,促进蛋白酶体介导的BRD3和BRD4降解。最后,在跨越五种前列腺癌(PC)细胞系的细胞毒性实验中,无论雄激素受体(AR)信号状态如何,PCC都比其他睡茄内酯类似物和金标准泛BET抑制剂(+)-JQ1更有效。