Monoacidic Inhibitors of the Kelch-like ECH-Associated Protein 1: Nuclear Factor Erythroid 2-Related Factor 2 (KEAP1:NRF2) Protein Protein Interaction with High Cell Potency Identified by Fragment-Based Discovery

被引:228
作者
Davies, Thomas G. [1 ]
Wixted, William E. [2 ]
Coyle, Joseph E. [1 ]
Griffiths-Jones, Charlotte [1 ]
Hearn, Keisha [1 ]
McMenamin, Rachel [1 ]
Norton, David [1 ]
Rich, Sharna J. [1 ]
Richardson, Caroline [1 ]
Saxty, Gordon [1 ]
Willems, Henriette M. G. [1 ]
Woolford, Alison J. -A. [1 ]
Cottom, Joshua E. [3 ]
Kou, Jen-Pyng [2 ]
Yonchuk, John G. [2 ]
Feldser, Heidi G. [2 ]
Sanchez, Yolanda [2 ]
Foley, Joseph P. [2 ]
Bolognese, Brian J. [2 ]
Logan, Gregory [2 ]
Podolin, Patricia L. [2 ]
Yan, Hongxing [2 ]
Callahan, James F. [2 ]
Heightman, Tom D. [1 ]
Kerns, Jeffrey K. [2 ]
机构
[1] Astex Pharmaceut, 436 Cambridge Sci Pk, Cambridge CB4 0QA, England
[2] GlaxoSmithKline, 709 Swedeland Rd, King Of Prussia, PA 19406 USA
[3] GlaxoSmithKline, 1250 South Collegeville Rd, Collegeville, PA 19426 USA
关键词
SMOKE-INDUCED EMPHYSEMA; STRUCTURAL BASIS; DLG MOTIFS; NRF2; INDUCTION; BINDING; LIGASE; STRESS; UBIQUITINATION; ELECTROPHILE;
D O I
10.1021/acs.jmedchem.6b00228
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
KEAP1 is the key regulator of the NRF2-mediated cytoprotective response, and increasingly recognized as a target for diseases involving oxidative stress. Pharmacological intervention has focused on molecules that decrease NRF2-ubiquitination through covalent modification of KEAP1 cysteine residues, but such electrophilic compounds lack selectivity and may be associated with off-target toxicity. We report here the first use of a fragment-based approach to directly target the KEAP1 Kelch-NRF2 interaction. X-ray crystallographic screening identified three distinct hot-spots for fragment binding within the NRF2 binding pocket of KEAP1, allowing progression of a weak fragment hit to molecules with nanomolar affinity for KEAP1 while maintaining drug-like properties. This work resulted in a promising lead compound which exhibits tight and selective binding to KEAP1, and activates the NRF2 antioxidant response in cellular and in vivo models, thereby providing a high quality chemical probe to explore the therapeutic potential of disrupting the KEAP1-NRF2 interaction.
引用
收藏
页码:3991 / 4006
页数:16
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