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RAD51 paralog function in cancer predisposition and genome integrity

RAD51 paralog function in cancer predisposition and genome integrity
RAD51 旁系同源物在癌症易感性和基因组完整性中的功能
批准号:
10745028
负责人:
Kara A Bernstein
金额:
$46.12万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2022
资助国家:
美国
项目状态:
未结题
起止时间:
2022-12-01 至 2026-02-28
关键词:
ATP phosphohydrolaseAddressAgingBRCA2 geneBiochemicalBiologicalBiological AssayBiological MarkersBleomycinCellsChromosome abnormalityClassificationClinicalClustered Regularly Interspaced Short Palindromic RepeatsCo-ImmunoprecipitationsComplexDNA DamageDNA Double Strand BreakDNA RepairDNA Repair PathwayDNA replication forkDNA-Protein InteractionDevelopmentDouble Strand Break RepairEmbryoEnvironmentEnvironmental CarcinogensEnvironmental ExposureExposure toFilamentFunctional disorderGeneticGenetic PolymorphismGenetic ScreeningGenomic InstabilityGerm-Line MutationGoalsHereditary Breast and Ovarian Cancer SyndromeHumanHuman Cell LineHybridsIndividualInflammatory ResponseInheritedInjuryInvadedIonizing radiationKnock-inKnock-outKnockout MiceKnowledgeLinkMalignant NeoplasmsMalignant neoplasm of ovaryMammary NeoplasmsMeasuresMediatingMetaphaseMethodsMicroscopyModelingMolecularMusMutateMutationOxidative Stress InductionPALB2 genePathogenicityPathway interactionsProteinsRAD51C geneRecombinant ProteinsReporterRoleScreening for Ovarian CancerSourceSystemTechnologyTestingTherapeuticTimeToxic Environmental SubstancesTracerVariantVisualizationWalker-A MotifWomanWorkXRCC2 geneXRCC3 geneYeastsbrca genecancer genomecancer predispositioncancer riskcost effectiveenvironmental mutagensepidemiology studyexperimental studygene repairgenome integrityhigh throughput screeninghomologous recombinationin vivoindividual patientmalignant breast neoplasmmembermutantnext generation sequencingnovelovarian neoplasmoxidative damageparalogous geneprecision medicinepreventprotein protein interactionrecruitrepairedscreening paneltoxicanttumorvariant of unknown significance

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Project Summary/Abstract: Accurate repair of DNA damage is critical for genetic stability, and for preventing aging-related degeneration and cancer. We are working to identify key factors that regulate accurate repair of DNA double-strand breaks (DSBs) through the error-free homologous recombination (HR) pathway. DSBs can arise from many sources including endogenous replication fork damage, exogenous environmental toxicants, or oxidative stresses induced by endogenous sources and during pro-inflammatory responses to toxicant injury. We found that the RAD51 paralogs are critical for promoting HR and hence for suppressing error-prone repair mechanisms. Over 300 studies link mutations in human RAD51 paralogs with cancer, and women with breast or ovarian cancer are now screened for RAD51 paralog mutations. However, it remains largely unknown which RAD51 paralog mutations are pathogenic and how these mutations sensitize individuals to environmentally induced-DNA damage due to our lack of functional analysis of either the wild-type or mutated proteins. We do not know how these proteins are recruited, their functional components, or the disruptions caused by mutations or polymorphisms in the RAD51 paralogs. This knowledge gap results from low abundance of endogenous RAD51 paralog proteins, insolubility of the recombinant proteins, as well as embryonic lethality in knock-out mice. We are therefore using genetic, biochemical, and cell biological approaches to characterize RAD51 paralog function upon exposure to DSB inducing agents. We will use ionizing radiation (IR) and bleomycin as model agents for environmentally relevant DSB-inducing agents. Using complementary approaches in combination with high-throughput genetic screening, we are now uniquely poised to address how RAD51 paralog mutations predispose individuals to human cancer and thus, to identify opportunities for determining who is at risk for cancer development upon exposure to environmental carcinogens. Our ultimate goal is to enable development of precision medicine strategies for individual patients whose tumors harbor a RAD51 paralog mutation profile.
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RAD51 paralog function in cancer predisposition and genome integrity
RAD51 paralog function in cancer predisposition and genome integrity
Replication fork dynamics and repair by Rad51 paralogs after DNA alkylation
Replication fork dynamics and repair by Rad51 paralogues after DNA alkylation
  • 批准号:
    10621773
  • 项目类别:
  • 资助金额:
    $33.51万
  • 财政年份:
    2019
  • 负责人:
    Kara A Bernstein
  • 依托单位:
海外基金