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Peterson Lisa A.
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http://hub.abes.fr/acs/periodical/crtoec/1995/volume_8/issue_7/101021tx00049a001/authorship/3
http://hub.abes.fr/acs/periodical/crtoec/1997/volume_10/issue_1/101021tx9601014/authorship/1
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http://hub.abes.fr/acs/periodical/bichaw/2003/volume_42/issue_45/101021bi035217v/authorship/1
http://hub.abes.fr/acs/periodical/crtoec/2002/volume_15/issue_3/101021tx0101402/authorship/3
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Identification of cis-2-Butene-1,4-dial as a Microsomal Metabolite of Furan
Metabolic activation of aromatic amines by human pancreas.
In vivo and in vitro persistence of pyridyloxobutyl DNA adducts from 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone
Formation of 1,4-Dioxo-2-butene-Derived Adducts of2‘-Deoxyadenosine and 2‘-Deoxycytidine in Oxidized DNA
Depurinating Acylfulvene−DNA Adducts: CharacterizingCellular Chemical Reactions of a Selective Antitumor Agent
The Pyridyloxobutyl DNA Adduct,O6-[4-Oxo-4-(3-pyridyl)butyl]guanine, Is Detected inTissues from 4-(Methylnitrosamino)-1-(3-pyridyl)-1-butanone-treated A/J Mice
Mgmt deficiency alters the in vivo mutational spectrum of tissues exposed to the tobacco carcinogen 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK)
Development of a Quantitative Liquid Chromatography/Electrospray Mass Spectrometric Assay for a MutagenicTobacco Specific Nitrosamine-Derived DNA Adduct,O6-[4-Oxo-4-(3-pyridyl)butyl]-2‘-deoxyguanosine
Detection of DNA Adducts Derived from the Reactive Metabolite ofFuran, cis-2-Butene-1,4-dial
Solution Structure of an O6-[4-oxo-4-(3-Pyridyl)butyl]guanine Adduct in an 11merDNA Duplex: Evidence for Formation of a Base Triplex
Investigations of metabolic precursors to hemoglobin and DNA adducts of 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone
Diethylnitrosamine exposure-responses for DNA damage, centrilobular cytotoxicity, cell proliferation and carcinogenesis in rat liver exhibit some non-linearities
SHORT COMMUNICATION: G to A transitions and G to T transversions in codon 12 of the Ki-ras oncogene isolated from mouse lung tumors induced by 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK) and relati DNA methylating and pyridyloxobutylating agents
Differences in the Rate of Repair of O6-Alkylguanines in Different Sequence Contexts by O6-Alkylguanine-DNA Alkyltransferase
Pyridyloxobutylation of Guanine Residues by4-[(Acetoxymethyl)nitrosamino]-1-(3-pyridyl)-1-butanoneGenerates Substrates of O6-Alkylguanine−DNAAlkyltransferase
Synthesis of DNA Oligonucleotides ContainingSite-Specifically IncorporatedO6-[4-Oxo-4-(3-pyridyl)butyl]guanine and Their Reactionwith O6-Alkylguanine-DNA Alkyltransferase
Genotoxic Methylating Agents Modulate ExtracellularSignal Regulated Kinase Activity throughMEK-Dependent, Glutathione-, and DNAMethylation-Independent Mechanisms in LungEpithelial Cells
Identification of a cis-2-Butene-1,4-dial-derived GlutathioneConjugate in the Urine of Furan-Treated Rats
{}N-Nitrosobenzylmethylamine Is Activated to a DNABenzylating Agent in Rats
Pyridyloxobutyl AdductO6-[4-Oxo-4-(3-pyridyl)butyl]guanine Is Present in4-(Acetoxymethylnitrosamino)-1-(3-pyridyl)-1-butanone-TreatedDNA and Is a Substrate for O6-Alkylguanine-DNAAlkyltransferase
Characterization of Nucleoside Adducts ofcis-2-Butene-1,4-dial, a Reactive Metabolite of Furan
The Formation of Substituted1,N6-Etheno-2‘-deoxyadenosine and1,N2-Etheno-2‘-deoxyguanosine Adducts bycis-2-Butene-1,4-dial, a Reactive Metabolite of Furan
O6-Pyridyloxobutylguanine Adducts Contribute to theMutagenic Properties of Pyridyloxobutylating Agents
Characterization of Amino Acid and GlutathioneAdducts of cis-2-Butene-1,4-dial, a Reactive Metabolite ofFuran
A Reactive Metabolite of Furan, cis-2-Butene-1,4-dial, IsMutagenic in the Ames Assay
Mutagenesis by O6-[4-Oxo-4-(3-pyridyl)butyl]guanine inEscherichia coli and Human Cells
The Repair of the Tobacco Specific Nitrosamine DerivedAdduct O6-[4-Oxo-4-(3-pyridyl)butyl]guanine byO6-Alkylguanine-DNA Alkyltransferase Variants
Synthesis of a 2‘-Deoxyguanosine Adduct ofcis-2-Butene-1,4-dial, a Reactive Metabolite of Furan
Decomposition of S-Nitrosocysteine via S- to N-Transnitrosation
Investigating the Role of Stereochemistry in the Activity of Anticancer Acylfulvenes: Synthesis,Reductase-Mediated Bioactivation, and Cellular Toxicity
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