DNA Replication and Recombination
DNA Replication and Recombination
批准号:
9329755
负责人:
Jane Peterson
金额:
$0.5万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-03-27 至 2018-03-26
关键词:
AddressAreaBiochemicalCellsChromatinCollaborationsConflict (Psychology)Copy Number PolymorphismDNADNA RepairDNA Repair PathwayDNA Sequence RearrangementDNA biosynthesisDNA replication forkDNA sequencingDNA-Directed DNA PolymeraseDefectDevelopmentDiseaseDrug resistanceEducational workshopElectron MicroscopyEukaryotaEvolutionGenetic RecombinationGenomeGenome StabilityGenomic DNAGenomic InstabilityGoalsHumanInternationalJointsKnowledgeLeadLifeLinkMaintenanceMalignant NeoplasmsMetabolismMethodologyMicroscopyMolecular MachinesNamesNeoplasm MetastasisNew MexicoOrganismOutcomeParticipantPathway interactionsPredispositionPrincipal InvestigatorProcessProkaryotic CellsRegulationRepetitive SequenceResearchResearch PersonnelResolutionRoleScientistSeriesShapesSiteTechniquesTechnologyTelomeraseTherapeutic InterventionThinkingTimeUntranslated RNAWomanWorkchromosome replicationclinical practiceepigenomefrontiergenome editinggenome integrityhelicasemeetingsmetaplastic cell transformationnew technologynovelparticlepostersprogramsrecombinational repairreconstitutionrepairedsymposiumtargeted treatmenttransgenerational epigenetic inheritancetumor heterogeneity
中文摘要
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英文摘要
ABSTRACT
Support is requested for a Keystone Symposia conference entitled DNA Replication and Recombination,
organized by Drs. John F.X. Diffley, Anja Groth and Scott Keeney. The conference will be held in Santa Fe,
New Mexico from April 2-6, 2017. DNA replication and recombination are common to all cells. Errors in these
processes lead to many diseases in humans, including cancer, and many fundamental questions are still
unresolved. Due to recent technical advances in microscopy and other techniques, these dynamic processes
can now be studied in time and space in both prokaryotes and eukaryotes. Moreover, breakthroughs in the
biochemical reconstitution of processes in DNA replication and recombination repair as well as single particle
electron microscopy promise to reveal new mechanisms at near-atomic resolution; and new DNA sequencing
technologies make it possible to study these key processes in great details. Mechanistic similarities across the
three domains of life provide new basic principles while differences identify potential targets for therapeutic
intervention. This series has historically been one of the premiere conferences in this field and one of the very
few that brings together scientists working in replication and recombination across all life forms. Because of
the close relationship between DNA replication and recombination and their importance for genome stability,
this conference will be held jointly with the Keystone Symposia conference on Genomic Instability and DNA
Repair. Talks at the DNA Replication and Recombination conference will focus on the mechanism and
regulation of these processes, with an emphasis on multiple organisms and multiple approaches. Talks in joint
sessions will center on the metabolism of stalled replication forks and the importance of chromatin in
replication, recombination and genome stability.
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