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Small-molecule inhibitor of OGG1 suppresses proinflammatory gene expression and inflammation

Authors :
Visnes, Torkild
Cazares-Korner, Armando
Hao, Wenjing
Wallner, Olov
Masuyer, Geoffrey
Loseva, Olga
Mortusewicz, Oliver
Wiita, Elisee
Sarno, Antonio
Manoilov, Aleksandr
Astorga-Wells, Juan
Jemth, Ann-Sofie
Pan, Lang
Sanjiv, Kumar
Karsten, Stella
Gokturk, Camilla
Grube, Maurice
Homan, Evert J.
Hanna, Bishoy M. F.
Paulin, Cynthia B. J.
Pham, Therese
Rasti, Azita
Berglund, Ulrika Warpman
von Nicolai, Catharina
Benitez-Buelga, Carlos
Koolmeister, Tobias
Ivanic, Dag
Iliev, Petar
Scobie, Martin
Krokan, Hans E.
Baranczewski, Pawel
Artursson, Per
Altun, Mikael
Jensen, Annika Jenmalm
Kalderen, Christina
Ba, Xueqing
Zubarev, Roman A.
Stenmark, Pal
Boldogh, Istvan
Helleday, Thomas
Visnes, Torkild
Cazares-Korner, Armando
Hao, Wenjing
Wallner, Olov
Masuyer, Geoffrey
Loseva, Olga
Mortusewicz, Oliver
Wiita, Elisee
Sarno, Antonio
Manoilov, Aleksandr
Astorga-Wells, Juan
Jemth, Ann-Sofie
Pan, Lang
Sanjiv, Kumar
Karsten, Stella
Gokturk, Camilla
Grube, Maurice
Homan, Evert J.
Hanna, Bishoy M. F.
Paulin, Cynthia B. J.
Pham, Therese
Rasti, Azita
Berglund, Ulrika Warpman
von Nicolai, Catharina
Benitez-Buelga, Carlos
Koolmeister, Tobias
Ivanic, Dag
Iliev, Petar
Scobie, Martin
Krokan, Hans E.
Baranczewski, Pawel
Artursson, Per
Altun, Mikael
Jensen, Annika Jenmalm
Kalderen, Christina
Ba, Xueqing
Zubarev, Roman A.
Stenmark, Pal
Boldogh, Istvan
Helleday, Thomas
Publication Year :
2018

Abstract

The onset of inflammation is associated with reactive oxygen species and oxidative damage to macromolecules like 7,8-dihydro-8-oxoguanine (8-oxoG) in DNA. Because 8-oxoguanine DNA glycosylase 1 (OGG1) binds 8-oxoG and because Ogg1-deficient mice are resistant to acute and systemic inflammation, we hypothesized that OGG1 inhibition may represent a strategy for the prevention and treatment of inflammation. We developed TH5487, a selective active-site inhibitor of OGG1, which hampers OGG1 binding to and repair of 8-oxoG and which is well tolerated by mice. TH5487 prevents tumor necrosis factor-alpha-induced OGG1-DNA interactions at guanine-rich promoters of proinflammatory genes. This, in turn, decreases DNA occupancy of nuclear factor kappa B and proinflammatory gene expression, resulting in decreased immune cell recruitment to mouse lungs. Thus, we present a proof of concept that targeting oxidative DNA repair can alleviate inflammatory conditions in vivo.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1235206775
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1126.science.aar8048