Computer Analysis of DNA Unknotting by Topoisomerase (pilot)
Computer Analysis of DNA Unknotting by Topoisomerase (pilot)
批准号:
8015307
负责人:
Mariel Vazquez
金额:
$7.35万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至
关键词:
AddressAnti-Bacterial AgentsAntineoplastic AgentsArtsBacterial TypingBacteriophagesBiological AssayCapsidCatenanesCell DeathCell divisionCell physiologyCellsChromosomesCircular DNAComputer AnalysisComputer SimulationComputersDNADNA Topoisomerase IVDataEffectivenessElectron MicroscopyEnsureEnvironmentEnzymesEquilibriumEukaryotic DNA Topoisomerases IIFundingGoalsHumanInternationalLeadLengthLifeMathematicsMeasuresMentorsMethodsModelingMolecularMolecular BiologyMonte Carlo MethodOrganismPaste substancePathway interactionsPhysicsPolymersProcessPublic HealthRecording of previous eventsReportingResearchResearch PersonnelResourcesRoleSamplingScientistSimulateSolutionsStudentsTechniquesTestingTheoretical StudiesTimeTopoisomeraseTopoisomerase IITopoisomerase-II InhibitorTwo-Dimensional Gel ElectrophoresisUnderrepresented MinorityValidationWomanWorkYeastsantimicrobial drugbasedesigninhibitor/antagonistinnovationinterdisciplinary approachinterestnovelresearch studysegregationsimulationsuccesstheories
中文摘要
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英文摘要
Type II topoisomerases are essential enzymes common to all organisms. Their cellular functions include
maintaining the levels of chromosome compaction and ensuring proper segregation at cell division. In
addition they are often used as targets for antimicrobial agents and anticancer drugs. Understanding the
process by which topoisomerase II (topo II) simplifies the topological complexity of its DMA substrate is of
key importance. By a cut-and-paste mechanism, which is well understood at the molecular level, topo II is
able to pass a DMA segment through another. How topo II recognizes the two DMA segments is still
unclear. Topo II is known to unknot and decatenate DMA to levels below those expected by random
strand-passage. These and other experimental observations suggest a chirality-driven non-random
mechanism of topo II action. Numerous experimental and theoretical studies have addressed these
questions. However a clear picture of the mechanism of topo II is still lacking. Our long-term goal is to
find an accurate model for the mechanism of topology simplification by topo II. We here focus on the
process of DNA unknotting. Our objective is to verify whether topo II has the ability to unknot DMA in the
smallest possible number of strand-passages, or whether a chirality bias combined with other local
information are sufficient to reach the experimentally observed unknotting levels. We propose an
interdisciplinary approach involving a sophisticated theoretical framework based on mathematical knot
theory and Monte Carlo computer simulations, and followed by experimental validation. The computer
implementation is based on a novel idea which will greatly reduce computation time as compared to other
computational models of unknotting.
Relevance to Public Health: Our method will give us the ability to efficiently simulate wild-type topo II
on any distribution of DNA knots. Besides being of theoretical interest, such modeling is relevant to public
health. Unknotting assays are used in the design of anti-cancer drugs to identify new topo II inhibitors.
Our work will be applied to quantifying the unknotting capabilities of the topo II of a given organism with
and without the presence of an inhibitor, thus establishing a precise measure of the inhibitor's
effectiveness.
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Computer Analysis of DNA Unknotting by Topoisomerase (pilot)
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批准号:7568892
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项目类别:
-
资助金额:$7.43万
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财政年份:2008
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负责人:Mariel Vazquez
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依托单位:
Computer Analysis of DNA Unknotting by Topoisomerase (pilot)
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批准号:7229137
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项目类别:
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资助金额:$7.5万
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财政年份:2007
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负责人:Mariel Vazquez
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依托单位:
Computer Analysis of DNA Unknotting by Topoisomerase (pilot)
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批准号:7751327
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项目类别:
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资助金额:$7.44万
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财政年份:--
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负责人:Mariel Vazquez
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依托单位:
海外基金