Arsenic co-carcinogenesis with UVR: nitrosation and oxidation of target proteins
Arsenic co-carcinogenesis with UVR: nitrosation and oxidation of target proteins
批准号:
8537458
负责人:
LAURIE G HUDSON
金额:
$33.3万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-09-01 至 2017-05-31
关键词:
AddressAdverse effectsAnimal ModelAreaArsenicArsenitesBindingBiochemicalBiological ModelsCarcinogensCellsChemicalsCysteineDNA BindingDNA DamageDNA RepairDNA Repair InhibitionDNA repair proteinDataDependenceDiseaseElementsExposure toFoodFrequenciesGenerationsGeneticGenetic ModelsGoalsHealthHormone Receptor DNA-Binding DomainHumanIndividualInternationalInterventionKnowledgeLaboratoriesLeadLife StyleLightLinkLiverMalignant NeoplasmsMalignant neoplasm of lungMediatingModificationMolecularMutagensMutationNADPH OxidaseNitric OxideNitrogenNitrosationOccupationalOutcome StudyOxidation-ReductionOxidative StressOxygenPathway interactionsPeptidesPlayPoly(ADP-ribose) PolymerasesPopulationProcessProteinsReactionReportingRisk FactorsRoleSkinSkin CancerSoilSpecificityStructureSuperoxidesTechniquesTestingTimeToxic effectTranslatingUV inducedUltraviolet RaysUnited StatesUnited States Environmental Protection AgencyUrinary tractWaterWater SupplyWorld Health OrganizationXeroderma PigmentosumZincZinc Fingersarmbasecancer riskcarcinogenesisdrinking waterexposed human populationgenotoxicityimprovedin vivoinhibitor/antagonistinterestkeratinocytenitrosative stressoxidationoxidative damagepreventprotein functionprototyperepairedresearch studysynergismtumorigenesis
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Widespread human exposure to arsenic through drinking water at levels in excess of the Environmental Protection Agency and World Health Organization minimum contaminant level of 10 ¿g/L is a national and international concern. It is becoming increasingly appreciated that low and non-cytotoxic concentrations of arsenic can amplify the DNA damaging and carcinogenic potential of other genotoxic agents such as ultraviolet radiation, at least in part, through inhibition of DNA repair processes. The mechanisms by which arsenic inhibits DNA repair target proteins is central to understanding the carcinogenic and co-carcinogenic potential of arsenic and to identify avenues to reverse or prevent the adverse effects of arsenic exposure in human populations. The current project will test the hypothesis that arsenic-generated reactive oxygen and nitrogen species inhibits the activity of zinc finger DNA repair proteins through reaction with redox-sensitive cysteine residues of the zinc finger domains. In Aim 1 we will investigate the impact of arsenic-mediated iNOS and NADPH oxidase (NOX) induction and subsequent nitric oxide and superoxide generation on the activity of two DNA repair proteins (XPA and PARP-1), DNA repair and genotoxicity in keratinocytes. Genetic and pharmacologic disruption of iNOS and NOX will define which pathway(s) are involved in arsenic-mediated inhibition of DNA repair. Aim 2 will investigate the interaction of arsenic-generated reactive oxygen and nitrogen species with the zinc fingers of XPA and PARP-1 and apply analytical techniques to define specific modifications of the zinc finger domain and consequences with regard to zinc binding. Data generated by our laboratories and others indicate selectivity for arsenic binding to zinc finger structures and we find that arsenic- bound, but not zinc bound, zinc finger peptide is highly vulnerable to oxidation We will test whether arsenic binding to a zinc finger translates to targeted oxidative and nitrosative modification and loss of zinc finger protein function. In Aim 3, we will test the iNOS and NOX dependence for the reported synergism between arsenic and ultraviolet radiation in DNA damage and skin tumorigenesis in vivo using genetic models. Thus, this project rigorously tests mechanisms of arsenic inhibition of key DNA repair target proteins using a multi- faceted approach. The outcomes from these studies will improve our understanding of mechanisms underlying arsenic disruption of zinc finger DNA repair protein function and may have significant impact on treatments or preventative interventions for arsenic exposed populations. Additionally, these studies may lead to testable hypotheses regarding potential arsenic targets in cancer and other arsenic-associated diseases.
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依托单位:
Zinc Chemoprevention of Arsenic Co-Carcinogenesis
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批准号:8762020
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项目类别:
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资助金额:$31.33万
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财政年份:2014
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负责人:LAURIE G HUDSON
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依托单位:
Zinc Chemoprevention of Arsenic Co-Carcinogenesis
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项目类别:
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资助金额:$31.44万
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财政年份:2014
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负责人:LAURIE G HUDSON
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依托单位:
Arsenic co-carcinogenesis with UVR: nitrosation and oxidation of target proteins
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批准号:8856568
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项目类别:
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资助金额:$33.98万
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Arsenic co-carcinogenesis with UVR: nitrosation and oxidation of target proteins
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Capitalizing on NSAID enantiomer selectivity for cancer prevention and therapy(PQ
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财政年份:2012
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依托单位:
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资助金额:$18.88万
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依托单位:
Arsenic co-carcinogenesis with UVR: nitrosation and oxidation of target proteins
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依托单位:
Arsenic co-carcinogenesis with UVR: nitrosation and oxidation of target proteins
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依托单位:
Predicting Novel Arsenic Targets in DNA Repair Pathways
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项目类别:
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资助金额:$22.2万
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依托单位:
Arsenic-enhanced skin carcinogenesis by UV radiation
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The role of Slug in cutaneous reepithelialization
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依托单位:
海外基金