Thiopurine derivative-induced Fpg/Nei DNA glycosylase inhibition : structural, dynamic and functional insights

2020
journal article
article
5
cris.lastimport.wos2024-04-10T02:30:55Z
dc.abstract.enDNA glycosylases are emerging as relevant pharmacological targets in inflammation, cancer and neurodegenerative diseases. Consequently, the search for inhibitors of these enzymes has become a very active research field. As a continuation of previous work that showed that 2-thioxanthine (2TX) is an irreversible inhibitor of zinc finger (ZnF)-containing Fpg/Nei DNA glycosylases, we designed and synthesized a mini-library of 2TX-derivatives (TXn) and evaluated their ability to inhibit Fpg/Nei enzymes. Among forty compounds, four TXn were better inhibitors than 2TX for Fpg. Unexpectedly, but very interestingly, two dithiolated derivatives more selectively and e ciently inhibit the zincless finger (ZnLF)-containing enzymes (human and mimivirus Neil1 DNA glycosylases hNeil1 and MvNei1, respectively). By combining chemistry, biochemistry, mass spectrometry, blind and flexible docking and X-ray structure analysis, we localized new TXn binding sites on Fpg/Nei enzymes. This endeavor allowed us to decipher at the atomic level the mode of action for the best TXn inhibitors on the ZnF-containing enzymes. We discovered an original inhibition mechanism for the ZnLF-containing Fpg/Nei DNA glycosylases by disulfide cyclic trimeric forms of dithiopurines. This work paves the way for the design and synthesis of a new structural class of inhibitors for selective pharmacological targeting of hNeil1 in cancer and neurodegenerative diseases.pl
dc.contributor.authorRieux, Charlottepl
dc.contributor.authorGoffinont, Stéphanepl
dc.contributor.authorCoste, Franckpl
dc.contributor.authorTber, Zahirapl
dc.contributor.authorCros, Julienpl
dc.contributor.authorRoy, Vincentpl
dc.contributor.authorGuerin, Martinepl
dc.contributor.authorGaudon, Virginiepl
dc.contributor.authorBourg, Stéphanepl
dc.contributor.authorBiela, Artur - 126102 pl
dc.contributor.authorAucagne, Vincentpl
dc.contributor.authorAgrofoglio, Luigipl
dc.contributor.authorGarnier, Norbertpl
dc.contributor.authorCastang, Bertrandpl
dc.date.accessioned2021-06-15T07:00:51Z
dc.date.available2021-06-15T07:00:51Z
dc.date.issued2020pl
dc.date.openaccess0
dc.description.accesstimew momencie opublikowania
dc.description.number6pl
dc.description.versionostateczna wersja wydawcy
dc.description.volume21pl
dc.identifier.articleid2058pl
dc.identifier.doi10.3390/ijms21062058pl
dc.identifier.eissn1422-0067pl
dc.identifier.issn1661-6596pl
dc.identifier.projectROD UJ / OPpl
dc.identifier.urihttps://ruj.uj.edu.pl/xmlui/handle/item/273927
dc.languageengpl
dc.language.containerengpl
dc.pbn.affiliationDziedzina nauk ścisłych i przyrodniczych : nauki biologicznepl
dc.rightsUdzielam licencji. Uznanie autorstwa 4.0 Międzynarodowa*
dc.rights.licenceCC-BY
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/legalcode.pl*
dc.share.typeotwarte czasopismo
dc.subject.enBERpl
dc.subject.enDNA glycosylasepl
dc.subject.enFpg/Neipl
dc.subject.enhNeil1pl
dc.subject.endisulfidepl
dc.subject.encyclophanepl
dc.subject.enDNA repair inhibitorspl
dc.subject.enzinc finger oxidationpl
dc.subject.plBERpl
dc.subject.plglikozylaza DNApl
dc.subject.plFpg/Neipl
dc.subject.plhNeil1pl
dc.subject.plwiązanie disiarczkowepl
dc.subject.plcyklofanpl
dc.subject.plinhibitory naprawy DNApl
dc.subject.plutlenianie palców cynkowychpl
dc.subtypeArticlepl
dc.titleThiopurine derivative-induced Fpg/Nei DNA glycosylase inhibition : structural, dynamic and functional insightspl
dc.title.journalInternational Journal of Molecular Sciencespl
dc.typeJournalArticlepl
dspace.entity.typePublication
cris.lastimport.wos
2024-04-10T02:30:55Z
dc.abstract.enpl
DNA glycosylases are emerging as relevant pharmacological targets in inflammation, cancer and neurodegenerative diseases. Consequently, the search for inhibitors of these enzymes has become a very active research field. As a continuation of previous work that showed that 2-thioxanthine (2TX) is an irreversible inhibitor of zinc finger (ZnF)-containing Fpg/Nei DNA glycosylases, we designed and synthesized a mini-library of 2TX-derivatives (TXn) and evaluated their ability to inhibit Fpg/Nei enzymes. Among forty compounds, four TXn were better inhibitors than 2TX for Fpg. Unexpectedly, but very interestingly, two dithiolated derivatives more selectively and e ciently inhibit the zincless finger (ZnLF)-containing enzymes (human and mimivirus Neil1 DNA glycosylases hNeil1 and MvNei1, respectively). By combining chemistry, biochemistry, mass spectrometry, blind and flexible docking and X-ray structure analysis, we localized new TXn binding sites on Fpg/Nei enzymes. This endeavor allowed us to decipher at the atomic level the mode of action for the best TXn inhibitors on the ZnF-containing enzymes. We discovered an original inhibition mechanism for the ZnLF-containing Fpg/Nei DNA glycosylases by disulfide cyclic trimeric forms of dithiopurines. This work paves the way for the design and synthesis of a new structural class of inhibitors for selective pharmacological targeting of hNeil1 in cancer and neurodegenerative diseases.
dc.contributor.authorpl
Rieux, Charlotte
dc.contributor.authorpl
Goffinont, Stéphane
dc.contributor.authorpl
Coste, Franck
dc.contributor.authorpl
Tber, Zahira
dc.contributor.authorpl
Cros, Julien
dc.contributor.authorpl
Roy, Vincent
dc.contributor.authorpl
Guerin, Martine
dc.contributor.authorpl
Gaudon, Virginie
dc.contributor.authorpl
Bourg, Stéphane
dc.contributor.authorpl
Biela, Artur - 126102
dc.contributor.authorpl
Aucagne, Vincent
dc.contributor.authorpl
Agrofoglio, Luigi
dc.contributor.authorpl
Garnier, Norbert
dc.contributor.authorpl
Castang, Bertrand
dc.date.accessioned
2021-06-15T07:00:51Z
dc.date.available
2021-06-15T07:00:51Z
dc.date.issuedpl
2020
dc.date.openaccess
0
dc.description.accesstime
w momencie opublikowania
dc.description.numberpl
6
dc.description.version
ostateczna wersja wydawcy
dc.description.volumepl
21
dc.identifier.articleidpl
2058
dc.identifier.doipl
10.3390/ijms21062058
dc.identifier.eissnpl
1422-0067
dc.identifier.issnpl
1661-6596
dc.identifier.projectpl
ROD UJ / OP
dc.identifier.uri
https://ruj.uj.edu.pl/xmlui/handle/item/273927
dc.languagepl
eng
dc.language.containerpl
eng
dc.pbn.affiliationpl
Dziedzina nauk ścisłych i przyrodniczych : nauki biologiczne
dc.rights*
Udzielam licencji. Uznanie autorstwa 4.0 Międzynarodowa
dc.rights.licence
CC-BY
dc.rights.uri*
http://creativecommons.org/licenses/by/4.0/legalcode.pl
dc.share.type
otwarte czasopismo
dc.subject.enpl
BER
dc.subject.enpl
DNA glycosylase
dc.subject.enpl
Fpg/Nei
dc.subject.enpl
hNeil1
dc.subject.enpl
disulfide
dc.subject.enpl
cyclophane
dc.subject.enpl
DNA repair inhibitors
dc.subject.enpl
zinc finger oxidation
dc.subject.plpl
BER
dc.subject.plpl
glikozylaza DNA
dc.subject.plpl
Fpg/Nei
dc.subject.plpl
hNeil1
dc.subject.plpl
wiązanie disiarczkowe
dc.subject.plpl
cyklofan
dc.subject.plpl
inhibitory naprawy DNA
dc.subject.plpl
utlenianie palców cynkowych
dc.subtypepl
Article
dc.titlepl
Thiopurine derivative-induced Fpg/Nei DNA glycosylase inhibition : structural, dynamic and functional insights
dc.title.journalpl
International Journal of Molecular Sciences
dc.typepl
JournalArticle
dspace.entity.type
Publication
Affiliations

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