| Literature DB >> 33508678 |
Jeyun Jo1, Lara Ibrahim2, Jonathan Iaconelli2, Jinsook Kwak1, Manoj Kumar3, Yunjin Jung1, Luke L Lairson2, Arnab K Chatterjee3, Peter G Schultz4, Michael J Bollong5, Hwayoung Yun6.
Abstract
The transcription factor NRF2 controls resistance to oxidative insult and is thus a key therapeutic target for treating a number of disease states associated with oxidative stress and aging. We previously reported CBR-470-1, a bis-sulfone which activates NRF2 by increasing the levels of methylglyoxal, a metabolite that covalently modifies NRF2 repressor KEAP1. Here, we report the design, synthesis, and structure activity relationship of a series of bis-sulfones derived from this unexplored chemical template. We identify analogs with sub-micromolar potencies, 7f and 7g, as well as establish that efficacious NRF2 activation can be achieved by non-toxic analogs 7c, 7e, and 9, a key limitation with CBR-470-1. Further efforts to identify non-covalent NRF2 activators of this kind will likely provide new insight into revealing the role of central metabolism in cellular signaling.Entities:
Keywords: ARE activator; NRF2; PGK1 inhibitor; Reactive metabolites; Structure-activity relationship
Year: 2021 PMID: 33508678 DOI: 10.1016/j.bioorg.2020.104614
Source DB: PubMed Journal: Bioorg Chem ISSN: 0045-2068 Impact factor: 5.275