化学
KEAP1型
半胱氨酸
小分子
共价键
转录因子
作用机理
机制(生物学)
立体化学
生物物理学
生物化学
基因
酶
体外
有机化学
生物
认识论
哲学
作者
Douglas J. Marcotte,Weike Zeng,Jean‐Christophe Hus,Andres McKenzie,Cathy Hession,Ping Jin,Chris Bergeron,Alexey A. Lugovskoy,Istvan J. Enyedy,Hernan Cuervo,Deping Wang,Cédric Atmanène,Dominique Roecklin,Malgorzata M. Vecchi,Valérie Vivat,Joachim Kraemer,Dirk F. H. Winkler,Victor Sukbong Hong,Jianhua Chao,Matvey Lukashev
标识
DOI:10.1016/j.bmc.2013.04.019
摘要
Keap1 binds to the Nrf2 transcription factor to promote its degradation, resulting in the loss of gene products that protect against oxidative stress. While cell-active small molecules have been identified that modify cysteines in Keap1 and effect the Nrf2 dependent pathway, few act through a non-covalent mechanism. We have identified and characterized several small molecule compounds that specifically bind to the Keap1 Kelch-DC domain as measured by NMR, native mass spectrometry and X-ray crystallography. One compound upregulates Nrf2 response genes measured by a luciferase cell reporter assay. The non-covalent inhibition strategy presents a reasonable course of action to avoid toxic side-effects due to non-specific cysteine modification.
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