Optimization of N-Piperidinyl-Benzimidazolone Derivatives as Potent and Selective Inhibitors of 8-Oxo-Guanine DNA Glycosylase 1

N-哌啶基苯并咪唑酮衍生物作为 8-氧代鸟嘌呤 DNA 糖基化酶 1 的强效和选择性抑制剂的优化

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作者:Olov Wallner, Armando Cázares-Körner, Emma Rose Scaletti, Geoffrey Masuyer, Tove Bekkhus, Torkild Visnes, Kirill Mamonov, Florian Ortis, Thomas Lundbäck, Maria Volkova, Tobias Koolmeister, Elisée Wiita, Olga Loseva, Monica Pandey, Evert Homan, Carlos Benítez-Buelga, Jonathan Davies, Martin Scobie, U

Abstract

8-oxo Guanine DNA Glycosylase 1 is the initiating enzyme within base excision repair and removes oxidized guanines from damaged DNA. Since unrepaired 8-oxoG could lead to G : C→T : A transversion, base removal is of utmost importance for cells to ensure genomic integrity. For cells with elevated levels of reactive oxygen species this dependency is further increased. In the past we and others have validated OGG1 as a target for inhibitors to treat cancer and inflammation. Here, we present the optimization campaign that led to the broadly used tool compound TH5487. Based on results from a small molecule screening campaign, we performed hit to lead expansion and arrived at potent and selective substituted N-piperidinyl-benzimidazolones. Using X-ray crystallography data, we describe the surprising binding mode of the most potent member of the class, TH8535. Here, the N-Piperidinyl-linker adopts a chair instead of a boat conformation which was found for weaker analogues. We further demonstrate cellular target engagement and efficacy of TH8535 against a number of cancer cell lines.

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