变构调节
AAA蛋白
化学
调节器
效力
药理学
ATP酶
生物化学
酶
生物
体外
基因
作者
Matthew G. LaPorte,Celeste Alverez,Alexander Chatterley,Marina Kovaliov,Evan J. Carder,Michael J. Houghton,Chaemin Lim,Eric R. Miller,Lalith P. Samankumara,Mary Liang,Kaylan Kerrigan,Zhizhou Yue,Shan Li,Francesca Tomaino,Feng Wang,Neal Green,Gordon M. Stott,Apurva K. Srivastava,Tsui‐Fen Chou,Peter Wipf
标识
DOI:10.1021/acsmedchemlett.3c00163
摘要
The AAA+ ATPase p97 (valosin-containing protein, VCP) is a master regulator of protein homeostasis and therefore represents a novel target for cancer therapy. Starting from a known allosteric inhibitor, NMS-873, we systematically optimized this scaffold, in particular, by applying a benzene-to-acetylene isosteric replacement strategy, specific incorporation of F, and eutomer/distomer identification, which led to compounds that exhibited nanomolar biochemical and cell-based potency. In cellular pharmacodynamic assays, robust effects on biomarkers of p97 inhibition and apoptosis, including increased levels of ubiquitinated proteins, CHOP and cleaved caspase 3, were observed. Compound (R)-29 (UPCDC-30766) represents the most potent allosteric inhibitor of p97 reported to date.
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