PROTAC Linkerology Leads to an Optimized Bivalent Chemical Degrader of Polycomb Repressive Complex 2 (PRC2) Components

Bivalent chemical degraders, otherwise known as proteolysis-targeting chimeras (PROTACs), have proven to be an efficient strategy for targeting overexpressed or mutated proteins in cancer. PROTACs provide an alternative approach to small-molecule inhibitors, which are restricted by occupancy-driven...

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Bibliographic Details
Published inACS chemical biology Vol. 18; no. 3; pp. 494 - 507
Main Authors Bashore, Frances M., Foley, Caroline A., Ong, Han Wee, Rectenwald, Justin M., Hanley, Ronan P., Norris-Drouin, Jacqueline L., Cholensky, Stephanie H., Mills, Christine A., Pearce, Kenneth H., Herring, Laura E., Kireev, Dmitri, Frye, Stephen V., James, Lindsey I.
Format Journal Article
LanguageEnglish
Published United States American Chemical Society 17.03.2023
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Summary:Bivalent chemical degraders, otherwise known as proteolysis-targeting chimeras (PROTACs), have proven to be an efficient strategy for targeting overexpressed or mutated proteins in cancer. PROTACs provide an alternative approach to small-molecule inhibitors, which are restricted by occupancy-driven pharmacology, often resulting in acquired inhibitor resistance via compensatory increases in protein expression. Despite the advantages of bivalent chemical degraders, they often have suboptimal physicochemical properties and optimization for efficient degradation remains highly unpredictable. Herein, we report the development of a potent EED-targeted PRC2 degrader, UNC7700. UNC7700 contains a unique cis-cyclobutane linker and potently degrades PRC2 components EED (DC50 = 111 nM; D max = 84%), EZH2WT/EZH2Y641N (DC50 = 275 nM; D max = 86%), and to a lesser extent SUZ12 (D max = 44%) after 24 h in a diffuse large B-cell lymphoma DB cell line. Characterization of UNC7700 and related compounds for ternary complex formation and cellular permeability to provide a rationale for the observed improvement in degradation efficiency remained challenging. Importantly, UNC7700 dramatically reduces H3K27me3 levels and is anti-proliferative in DB cells (EC50 = 0.79 ± 0.53 μM).
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Author Contributions
Conceptualization, F.M.P. and L.I.J.; Formal Analysis, F.M.P., C.A.F., J.M.R., C.A.M., L.E.H., D.K, H.W.O., R.P.H.; Investigation, F.M.P., C.A.F., J.M.R., C.A.M., L.E.H., D.K, H.W. O., R.P.H.; Resources, S.H.C. and J.L.N.-D., Writing – Original Draft, F.M.P., Writing – Review & Editing, F.M.P, C.A.F., L.I.J., S.V.F., C.A.M., L.E.H., H.W.O., K.H.P.; Visualization, F.M.P., L.E.H., and D.K.; Supervision, L.E.H., S.V.F., K.H.P., and L.I.J.; Project Administration, L.I.J., Funding Acquisition, L.I.J. and S.V.F.
ISSN:1554-8929
1554-8937
DOI:10.1021/acschembio.2c00804