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Synthesis of N2-trans-isosafrole-dG-adduct Bearing DNAs and the Bypass Studies with Human TLS Polymerases κ and η

Authors :
Bagale, Siddharam Shivappa
Deshmukh, Priyanka U.
Lad, Shailesh B.
Sudarsan, Akhil
Sudhakar, Sruthi
Mandal, Soumyadeep
Kondabagil, Kiran
Pradeepkumar, P. I.
Source :
The Journal of Organic Chemistry; June 2024, Vol. 89 Issue: 11 p7680-7691, 12p
Publication Year :
2024

Abstract

Safrole is a natural product present in many plants and plant products, including spices and essential oils. During cellular metabolism, it converts to a highly reactive trans-isosafrole (SF) intermediate that reacts with genomic DNA and forms N2-SF-dG and N6-SF-dA DNA adducts, which are detected in the oral tissue of cancer patients with betel quid chewing history. To study the SF-induced carcinogenesis and to probe the role of low fidelity translesion synthesis (TLS) polymerases in bypassing SF adducts, herein, we report the synthesis of N2-SF-dG modified DNAs using phosphoramidite chemistry. The N2-SF-dG modification in the duplex DNA does not affect the thermal stability and retains the B-form of helical conformation, indicating that this adduct may escape the radar of common DNA repair mechanisms. Primer extension studies showed that the N2-SF-dG adduct is bypassed by human TLS polymerases hpolκ and hpolη, which perform error-free replication across this adduct. Furthermore, molecular modeling and dynamics studies revealed that the adduct reorients to pair with the incoming nucleotide, thus allowing the effective bypass. Overall, the results indicate that hpolκ and hpolη do not distinguish the N2-SF-dG adduct, suggesting that they may not be involved in the safrole-induced carcinogenicity.

Details

Language :
English
ISSN :
00223263
Volume :
89
Issue :
11
Database :
Supplemental Index
Journal :
The Journal of Organic Chemistry
Publication Type :
Periodical
Accession number :
ejs66357483
Full Text :
https://doi.org/10.1021/acs.joc.4c00368