KEAP1 promotes the ubiquitin-dependent degradation of NRF2 by assembling into a CUL3-dependent ubiquitin ligase complex. Oxidative and electrophilic stress inhibit KEAP1 allowing NRF2 to accumulate for the transactivation of stress response genes. To date there are no structures of the KEAP1-CUL3 interaction nor binding data to show the contributions of different domains to their binding affinity. We determined a crystal structure of the BTB and 3-box domains of human KEAP1 in complex with the CUL3 N-terminal domain that showed a heterotetrameric assembly with 2:2 stoichiometry. To support the structural data, we developed a versatile TR-FRET-based assay system to profile the binding of BTB-domain-containing proteins to CUL3 and determine the contribution of distinct protein features, revealing the importance of the CUL3 N-terminal extension for high affinity binding. We further provide direct evidence that the investigational drug CDDO does not disrupt the KEAP1-CUL3 interaction, even at high concentrations, but reduces the affinity of KEAP1-CUL3 binding. The TR-FRET-based assay system offers a generalizable platform for profiling this protein class and may form a suitable screening platform for ligands that disrupt these interactions by targeting the BTB or 3-box domains to block E3 ligase function.
Structural and biochemical characterization establishes a detailed understanding of KEAP1-CUL3 complex assembly.
结构和生化表征建立了对 KEAP1-CUL3 复合物组装的详细了解
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作者:Adamson Roslin J, Payne N Connor, Bartual Sergio G, Mazitschek Ralph, Bullock Alex N
| 期刊: | Free Radical Biology and Medicine | 影响因子: | 8.200 |
| 时间: | 2023 | 起止号: | 2023 Aug 1; 204:215-225 |
| doi: | 10.1016/j.freeradbiomed.2023.04.021 | 研究方向: | 其它 |
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