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Polysulfide compounds as inhibitors of the key base excision repair enzymes Full article

Journal Biopolymers and Cell
ISSN: 0233-7657
Output data Year: 2012, Volume: 28, Number: 3, Pages: 239-241 Pages count : 3 DOI: 10.7124/bc.000055
Tags Apurinic/apyrimidinic endonuclea.se 1; DNA polymerase β; Inhibitor; Pentathiepine; Poly(ADP-ribose)polymerase 1; Polysulfide
Authors Kutuzov M.M. 1 , Zakharenko A.L. 1 , Sukhanova M.V. 1 , Khodyreva S.N. 1 , Khomenko T.M. 2 , Volcho K.P. 2 , Salakhutdinov N.F. 2 , Lavrik O.I. 1
Affiliations
1 (Scopus) Novosibirsk Institute of Chemical Biology and Fundamental Medicine, Siberian Branch of the Russian Academy of Sciences, 8, Akademika Lavrentieva Ave, Novosibirsk, 630090, Russian Federation
2 (Scopus) N. N. Vorozhtsov Novosibirsk Institute of Organic Chemistry, Siberian Branch of the Russian Academy of Sciences, 9, Akademika Lavrentieva Ave, Novosibirsk, 630090, Russian Federation

Abstract: Aim. To increase the capacity of antitumor therapy based on DNA damage it is important to minimize the repair of DNA lesions that can be achieved by inhibiting the activity of key DNA repair enzymes. To this end several benzopentathiepine and benzo[1,3]dithiol derivatives were synthesized and tested as inhibitors of the key base excision repair (BER) enzymes, PARP1, DNA polymerase β, and APE 1. Methods. The procedure of synthesis of several new compounds was developed. The inhibitory capacity of the compounds was estimated by comparison of the enzyme activities in specific tests in the presence of compounds versus their absence. Results. Benzopentathiepine derivative bearing trifluoromethyl group at the 1-st position was shown to be a weak inhibitor of PARP1. Cyclic substituents at the 1-st position attached through amide bond bring about moderate enhancement of pol β inhibition. Each studied substituent at the 1-st position considerably increases the inhibition of APE1-catalyzed hydrolysis of AP sites as compared to parent compound. Conclusions. Several new inhibitors of BER enzymes were revealed. The directions for further modification of compounds to improve their inhibitory activity were found out. © Institute of Molecular Biology and Genetics, NAS of Ukraine, 2012.
Cite: Kutuzov M.M. , Zakharenko A.L. , Sukhanova M.V. , Khodyreva S.N. , Khomenko T.M. , Volcho K.P. , Salakhutdinov N.F. , Lavrik O.I.
Polysulfide compounds as inhibitors of the key base excision repair enzymes
Biopolymers and Cell. 2012. V.28. N3. P.239-241. DOI: 10.7124/bc.000055 Scopus РИНЦ OpenAlex
Files: Full text from publisher
Dates:
Published print: May 20, 2012
Identifiers:
Scopus: 2-s2.0-84863802498
Elibrary: 17840836
OpenAlex: W2314613235
Citing:
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Scopus 1
Elibrary 4
OpenAlex 1
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