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Dive into the research topics where Shana J. Sturla is active.

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Featured researches published by Shana J. Sturla.


Molecular BioSystems | 2009

Profiling patterns of glutathione reductase inhibition by the natural product illudin S and its acylfulvene analogues.

Xiaodan Liu; Shana J. Sturla

Acylfulvenes (AFs) are a class of antitumor agents with favorable cytotoxic selectivity profiles compared to their natural product precursor, illudin S. Like many alkylating agents, illudin S and AFs readily react with thiol-containing small molecules such as cysteine, glutathione and cysteine-containing peptides; reduced cellular glutathione levels can affect illudin S toxicity. Glutathione reductase (GR) is a critical cellular antioxidant enzyme that regulates the intracellular ratio of reduced-oxidized glutathione. In this study, we found that acylfulvene analogues are GR inhibitors, and evaluated aspects of the drug-enzyme interactions as compared with the structurally related natural product illudin S and the known irreversible GR inhibitor, carmustine. Acylfulvene analogues exhibited concentration-dependent GR inhibitory activity with micromolar IC(50)s; however, up to 2 mM illudin S did not inhibit GR activity. The absence of NADPH attenuates GR inhibition by AFs and the presence of glutathione disulfide (GSSG), the natural GR substrate, which binds to the enzyme active site, has a minimal effect in protecting GR from AFs. Furthermore, each compound can induce GR conformation changes independent of the presence of NADPH or GSSG. These results, together with gel-filtration analysis results and mass spectrometry data, indicate AF is a reversible inhibitor and HMAF an irreversible inhibitor that can form a bis-adduct with GR by reacting with active site cysteines. Finally in a cell-based assay, illudin S and HMAF were found to inhibit GR activity, but this inhibition was not associated with the reduction of GR levels in the cell. A model accounting for differences in mechanisms of GR inhibition by the series of compounds is discussed.


Chemical Research in Toxicology | 2003

Reactions of Formaldehyde plus Acetaldehyde with Deoxyguanosine and DNA: Formation of Cyclic Deoxyguanosine Adducts and Formaldehyde Cross-Links

Guang Cheng; Yongli Shi; Shana J. Sturla; John R. Jalas; Edward J. McIntee; Peter W. Villalta; Mingyao Wang; Stephen S. Hecht


Chemical Research in Toxicology | 2003

Identification of adducts formed by pyridyloxobutylation of deoxyguanosine and DNA by 4-(acetoxymethylnitrosamino)-1-(3-pyridyl)-1-butanone, a chemically activated form of tobacco specific carcinogens.

Mingyao Wang; Guang Cheng; Shana J. Sturla; Yongli Shi; Edward J. McIntee; Peter W. Villalta; Pramod Upadhyaya; Stephen S. Hecht


Chemical Research in Toxicology | 2006

Quantitation of pyridyloxobutyl DNA adducts of tobacco-specific nitrosamines in rat tissue DNA by high-performance liquid chromatography-electrospray ionization-tandem mass spectrometry

Yanbin Lao; Peter W. Villalta; Shana J. Sturla; Mingyao Wang; Stephen S. Hecht


Chemical Research in Toxicology | 2005

Mass spectrometric analysis of relative levels of pyridyloxobutylation adducts formed in the reaction of DNA with a chemically activated form of the tobacco-specific carcinogen 4- (methylnitrosamino) -1- (3-pyridyl) -1 -butanone

Shana J. Sturla; Jana Scott; Yanbin Lao; Stephen S. Hecht; Peter W. Villalta


Chemical Research in Toxicology | 2004

Identification of O2-substituted pyrimidine adducts formed in reactions of 4-(acetoxymethylnitrosamino)- 1-(3-pyridyl)-1-butanone and 4-(acetoxymethylnitros- amino)-1-(3-pyridyl)-1-butanol with DNA.

Stephen S. Hecht; Peter W. Villalta; Shana J. Sturla; Guang Cheng; Nanxiong Yu; Pramod Upadhyaya; Mingyao Wang


Journal of the American Chemical Society | 2007

Depurinating Acylfulvene−DNA Adducts: Characterizing Cellular Chemical Reactions of a Selective Antitumor Agent

Jiachang Gong; V. G. Vaidyanathan; Xiang Yu; Thomas W. Kensler; Lisa A. Peterson; Shana J. Sturla


Current Opinion in Chemical Biology | 2007

DNA adduct profiles: chemical approaches to addressing the biological impact of DNA damage from small molecules.

Shana J. Sturla


Rapid Communications in Mass Spectrometry | 2009

Simultaneous determination of inositol and inositol phosphates in complex biological matrices: Quantitative ion-exchange chromatography/tandem mass spectrometry

Xiaodan Liu; Peter W. Villalta; Shana J. Sturla


Chemical Research in Toxicology | 2007

Nucleobase-dependent reactivity of a quinone metabolite of pentachlorophenol

V. G. Vaidyanathan; Peter W. Villalta; Shana J. Sturla

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Mingyao Wang

University of Minnesota

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Guang Cheng

University of Minnesota

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Xiaodan Liu

University of Minnesota

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