化学
对偶(语法数字)
计算生物学
文学类
艺术
生物
作者
Anthony K. Edmonds,Dimitrios-Ilias Balourdas,Graham P. Marsh,Robert Felix,Bradley Brasher,Jeff Cooper,Cari L. Graber-Feesl,Madhu Kollareddy,Karim Malik,Helen Stewart,Timothy Chevassut,Ella Lineham,Simon Morley,Oleg Fedorov,James M. Bennett,Mohan B. Rajasekaran,Samuel Ojeda,Drew Harrison,Christopher J. Ott,Andreas C. Joerger
标识
DOI:10.1021/acs.jmedchem.5c00395
摘要
Degraders with dual activity against BRD4 and CBP/EP300 were designed. A structure-guided design approach was taken to assess and test potential exit vectors on the dual BRD4 and CBP/EP300 inhibitor, ISOX-DUAL. Candidate degrader panels revealed that VHL-recruiting moieties could mediate dose-responsive ubiquitination of BRD4. A panel of CRBN-recruiting thalidomide-based degraders was unable to induce ubiquitination or degradation of target proteins. High-resolution protein cocrystal structures revealed an unexpected interaction between the thalidomide moiety and Trp81 on the first bromodomain of BRD4. The inability to form a ternary complex provides a potential rationale for the lack of degrader activity with these compounds, some of which have remarkable affinities close to those of (+)-JQ1, as low as 65 nM in a biochemical assay, vs 1.5 μM for their POI ligand, ISOX-DUAL. Such a "degrader collapse" may represent an under-reported mechanism by which some putative degrader molecules are inactive with respect to target protein degradation.
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