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Keyword
- DNA damage8
- DNA polymerase8
- DNA replication8
- mutagenesis8
- DNA alkylation6
- translesion synthesis6
- DNA adduct4
- DNA repair4
- mutagenesis mechanism4
- carcinogenesis2
- MS2
- posttranslational modification (PTM)2
- translesion synthesis polymerase2
- Ada1
- DNA enzyme1
- DNA methylating agent1
- DNA pol eta1
- DNA polymerase ι1
- DNA synthesis1
- DNA transcription1
- N-nitrosamine1
- N-nitroso compounds1
- O2-alkylthymidine1
- O6-alkyl-2'-deoxyguanosine1
- O6-alkylguanine lesion1
DNA and Chromosomes
10 Results
- DNA and ChromosomesOpen Access
Ada protein– and sequence context–dependent mutagenesis of alkyl phosphotriester lesions in Escherichia coli cells
Journal of Biological ChemistryVol. 295Issue 26p8775–8783Published online: May 7, 2020- Jiabin Wu
- Jun Yuan
- Nathan E. Price
- Yinsheng Wang
Cited in Scopus: 1Alkyl phosphotriester (alkyl-PTE) lesions are frequently induced in DNA and are resistant to repair. Here, we synthesized and characterized methyl (Me)- and n-butyl (nBu)-PTEs in two diastereomeric configurations (Sp and Rp) at six different flanking dinucleotide sites, i.e. XT and TX (X = A, C, or G), and assessed how these lesions impact DNA replication in Escherichia coli cells. When single-stranded vectors contained an Sp-Me-PTE in the sequence contexts of 5′-AT-3′, 5′-CT-3′, or 5′-GT-3′, DNA replication was highly efficient and the replication products for all three sequence contexts contained 85–90% AT and 5–10% TG. - DNA and ChromosomesOpen Access
The roles of polymerases ν and θ in replicative bypass of O6- and N2-alkyl-2′-deoxyguanosine lesions in human cells
Journal of Biological ChemistryVol. 295Issue 14p4556–4562Published online: February 25, 2020- Hua Du
- Pengcheng Wang
- Jun Wu
- Xiaomei He
- Yinsheng Wang
Cited in Scopus: 7Exogenous and endogenous chemicals can react with DNA to produce DNA lesions that may block DNA replication. Not much is known about the roles of polymerase (Pol) ν and Pol θ in translesion synthesis (TLS) in cells. Here we examined the functions of these two polymerases in bypassing major-groove O6-alkyl-2′-deoxyguanosine (O6-alkyl-dG) and minor-groove N2-alkyl-dG lesions in human cells, where the alkyl groups are ethyl, n-butyl (nBu), and, for O6-alkyl-dG, pyridyloxobutyl. We found that Pol ν and Pol θ promote TLS across major-groove O6-alkyl-dG lesions. - DNA and ChromosomesOpen Access
Repair and translesion synthesis of O6-alkylguanine DNA lesions in human cells
Journal of Biological ChemistryVol. 294Issue 29p11144–11153Published online: June 5, 2019- Hua Du
- Pengcheng Wang
- Lin Li
- Yinsheng Wang
Cited in Scopus: 14O6-alkyl-2′-deoxyguanosine (O6-alkyl-dG) lesions are among the most mutagenic and prevalent alkylated DNA lesions that are associated with cancer initiation and progression. In this study, using a shuttle vector–based strand-specific PCR-competitive replication and adduct bypass assay in conjunction with tandem MS for product identification, we systematically assessed the repair and replicative bypass of a series of O6-alkyl-dG lesions, with the alkyl group being a Me, Et, nPr, iPr, nBu, iBu, or sBu, in several human cell lines. - DNA and ChromosomesOpen Access
Human DNA polymerase η has reverse transcriptase activity in cellular environments
Journal of Biological ChemistryVol. 294Issue 15p6073–6081Published online: March 6, 2019- Yan Su
- Pratibha P. Ghodke
- Martin Egli
- Lin Li
- Yinsheng Wang
- F. Peter Guengerich
Cited in Scopus: 28Classical DNA and RNA polymerase (pol) enzymes have defined roles with their respective substrates, but several pols have been found to have multiple functions. We reported previously that purified human DNA pol η (hpol η) can incorporate both deoxyribonucleoside triphosphates (dNTPs) and ribonucleoside triphosphates (rNTPs) and can use both DNA and RNA as substrates. X-ray crystal structures revealed that two pol η residues, Phe-18 and Tyr-92, behave as steric gates to influence sugar selectivity. - DNA and ChromosomesOpen Access
DNA replication studies of N-nitroso compound–induced O6-alkyl-2′-deoxyguanosine lesions in Escherichia coli
Journal of Biological ChemistryVol. 294Issue 11p3899–3908Published online: January 17, 2019- Pengcheng Wang
- Jiapeng Leng
- Yinsheng Wang
Cited in Scopus: 9N-Nitroso compounds (NOCs) are common DNA-alkylating agents, are abundantly present in food and tobacco, and can also be generated endogenously. Metabolic activation of some NOCs can give rise to carboxymethylation and pyridyloxobutylation/pyridylhydroxybutylation of DNA, which are known to be carcinogenic and can lead to gastrointestinal and lung cancer, respectively. Herein, using the competitive replication and adduct bypass (CRAB) assay, along with MS- and NMR-based approaches, we assessed the cytotoxic and mutagenic properties of three O6-alkyl-2′-deoxyguanosine (O6-alkyl-dG) adducts, i.e. - DNA and ChromosomesOpen Access
Cytotoxic and mutagenic properties of O6-alkyl-2′-deoxyguanosine lesions in Escherichia coli cells
Journal of Biological ChemistryVol. 293Issue 39p15033–15042Published online: August 1, 2018- Pengcheng Wang
- Yinsheng Wang
Cited in Scopus: 6Environmental exposure and cellular metabolism can give rise to DNA alkylation, which can occur on the nitrogen and oxygen atoms of nucleobases, as well as on the phosphate backbone. Although O6-alkyl-2′-deoxyguanosine (O6-alkyl-dG) lesions are known to be associated with cancer, not much is known about how the alkyl group structures in these lesions affect their repair and replicative bypass in vivo or how translesion synthesis DNA polymerases influence the latter process. To answer these questions, here we synthesized oligodeoxyribonucleotides harboring seven O6-alkyl-dG lesions, with the alkyl group being Me, Et, nPr, iPr, nBu, iBu, or sBu, and examined the impact of these lesions on DNA replication in Escherichia coli cells. - DNA and ChromosomesOpen Access
Cytotoxic and mutagenic properties of minor-groove O2-alkylthymidine lesions in human cells
Journal of Biological ChemistryVol. 293Issue 22p8638–8644Published online: April 23, 2018- Jun Wu
- Pengcheng Wang
- Lin Li
- Changjun You
- Yinsheng Wang
Cited in Scopus: 13Endogenous metabolism, environmental exposure, and cancer chemotherapy can lead to alkylation of DNA. It has been well documented that, among the different DNA alkylation products, minor-groove O2-alkylthymidine (O2-alkyldT) lesions are inefficiently repaired. In the present study, we examined how seven O2-alkyldT lesions, with the alkyl group being a Me, Et, nPr, iPr, nBu, iBu, or sBu, are recognized by the DNA replication machinery in human cells. We found that the replication bypass efficiencies of these lesions decrease with increasing length of the alkyl chain, and that these lesions induce substantial frequencies of T→A and T→G mutations. - DNA and ChromosomesOpen Access
Impact of tobacco-specific nitrosamine–derived DNA adducts on the efficiency and fidelity of DNA replication in human cells
Journal of Biological ChemistryVol. 293Issue 28p11100–11108Published online: May 22, 2018- Hua Du
- Jiapeng Leng
- Pengcheng Wang
- Lin Li
- Yinsheng Wang
Cited in Scopus: 26The tobacco-derived nitrosamines 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK) and N′-nitrosonornicotine (NNN) are known human carcinogens. Following metabolic activation, NNK and NNN can induce a number of DNA lesions, including several 4-(3-pyridyl)-4-oxobut-1-yl (POB) adducts. However, it remains unclear to what extent these lesions affect the efficiency and accuracy of DNA replication and how their replicative bypass is influenced by translesion synthesis (TLS) DNA polymerases. In this study, we investigated the effects of three stable POB DNA adducts (O2-POB-dT, O4-POB-dT, and O6-POB-dG) on the efficiency and fidelity of DNA replication in HEK293T human cells. - DNA and ChromosomesOpen Access
Cross-talk between the H3K36me3 and H4K16ac histone epigenetic marks in DNA double-strand break repair
Journal of Biological ChemistryVol. 292Issue 28p11951–11959Published online: May 25, 2017- Lin Li
- Yinsheng Wang
Cited in Scopus: 48Post-translational modifications of histone proteins regulate numerous cellular processes. Among these modifications, trimethylation of lysine 36 in histone H3 (H3K36me3) and acetylation of lysine 16 in histone H4 (H4K16ac) have important roles in transcriptional regulation and DNA damage response signaling. However, whether these two epigenetic histone marks are mechanistically linked remains unclear. Here we discovered a new pathway through which H3K36me3 stimulates H4K16ac upon DNA double-strand break (DSB) induction in human cells. - DNA and ChromosomesOpen Access
Posttranslational Regulation of Human DNA Polymerase ι
Journal of Biological ChemistryVol. 290Issue 45p27332–27344Published online: September 14, 2015- Justyna McIntyre
- Mary P. McLenigan
- Ekaterina G. Frank
- Xiaoxia Dai
- Wei Yang
- Yinsheng Wang
- and others
Cited in Scopus: 14Background: Many proteins are subject to posttranslational regulation, such as ubiquitination.Results: Human DNA polymerase ι (polι) can be monoubiquitinated at >27 unique sites, and exposure to naphthoquinones results in polyubiquitination of polι.Conclusion: Ubiquitination sites are located across the entire polι polypeptide as well as various structural motifs.Significance: Ubiquitination at these sites is likely to alter cellular functions of polι in vivo.