Title
Small-molecule activation of OGG1 increases oxidative DNA damage repair by gaining a new function
Date Issued
24 June 2022
Access level
open access
Resource Type
journal article
Author(s)
Michel M.
Benítez-Buelga C.
Calvo P.A.
Hanna B.M.F.
Mortusewicz O.
Masuyer G.
Davies J.
Wallner O.
Sanjiv K.
Albers J.J.
Jemth A.S.
Visnes T.
Sastre-Perona A.
Danda A.N.
Homan E.J.
Marimuthu K.
Zhenjun Z.
Chi C.N.
Sarno A.
Wiita E.
von Nicolai C.
Komor A.J.
Rajagopal V.
Müller S.
Hank E.C.
Varga M.
Scaletti E.R.
Pandey M.
Karsten S.
Haslene-Hox H.
Loevenich S.
Marttila P.
Rasti A.
Mamonov K.
Ortis F.
Schömberg F.
Loseva O.
Stewart J.
D'Arcy-Evans N.
Koolmeister T.
Henriksson M.
Michel D.
de Ory A.
Acero L.
Calvete O.
Scobie M.
Hertweck C.
Vilotijevic I.
Kalderén C.
Osorio A.
Perona R.
Stolz A.
Stenmark P.
Berglund U.W.
de Vega M.
Helleday T.
Universidad Noruega de Ciencia y Tecnología
Publisher(s)
American Association for the Advancement of Science
Abstract
Oxidative DNA damage is recognized by 8-oxoguanine (8-oxoG) DNA glycosylase 1 (OGG1), which excises 8-oxoG, leaving a substrate for apurinic endonuclease 1 (APE1) and initiating repair. Here, we describe a small molecule (TH10785) that interacts with the phenylalanine-319 and glycine-42 amino acids of OGG1, increases the enzyme activity 10-fold, and generates a previously undescribed b,d-lyase enzymatic function. TH10785 controls the catalytic activity mediated by a nitrogen base within its molecular structure. In cells, TH10785 increases OGG1 recruitment to and repair of oxidative DNA damage. This alters the repair process, which no longer requires APE1 but instead is dependent on polynucleotide kinase phosphatase (PNKP1) activity. The increased repair of oxidative DNA lesions with a small molecule may have therapeutic applications in various diseases and aging.
Start page
1471
End page
1476
Volume
376
Issue
6600
Language
English
OCDE Knowledge area
Genética humana
Scopus EID
2-s2.0-85132689112
PubMed ID
Source
Science
ISSN of the container
00368075
Sources of information: Directorio de Producción Científica Scopus