Roles of Human DNA Polymearse Epsilon in Mutagenesis and Genome Stability
Roles of Human DNA Polymearse Epsilon in Mutagenesis and Genome Stability
批准号:
7923817
负责人:
Zachary F Pursell
金额:
$24.9万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-01 至 2012-07-31
关键词:
AllelesBiochemicalBiologicalBypassCatalytic DomainCell CycleCell Cycle ArrestCell Cycle RegulationCellsDNADNA DamageDNA RepairDNA biosynthesisDNA lesionDNA strand breakDNA-Directed DNA PolymeraseDiseaseEnzymesExposure toGenetic RecombinationGenetic TranscriptionGenomeGenome StabilityGenomic InstabilityHoloenzymesHomologous ProteinHumanHuman GenomeIn VitroInstructionKnowledgeLeadLeftLesionLiteratureMalignant NeoplasmsMeasuresMitosisMutagenesisMutationN-terminalOrganismOrthologous GeneOutcomePhenotypePlayPolymeraseProcessPropertyProteinsPyrimidine DimersRecombinantsRoleSignal TransductionSiteTestingTherapeuticYeastsbasedesignenvironmental agenthuman DNAhuman diseasein vivomutantnoveloverexpressionpreventprotein complexreconstitutionrepairedresponsetool
中文摘要
项目概述(见说明):
英文摘要
PROJECT SUMMARY (See instructions):
Environmental insults can lead to DNA base damages and DNA strand breaks, outcomes that have the potential to destabilize the genome if left unrepaired. In order to avoid genome instability and cancer, DNA polymerases play a central role in accurately replicating the genome and repairing damaged DNA. DNA Polymerase e (Pol E) specifically plays important roles not only in replication and repair, but is unique among DNA polymerases in its involvement in coordinating replication progression and mitosis through its checkpoint function.
The important, yet not precisely defined roles played by Pol e in replication and repair make the study of its fidelity crucial to understanding how human cells are able to avoid the consequences of DNA damage that, if left unrepaired, can lead to mutagenesis and diseases like cancer. Given its importance, the lack of knowledge of the fidelity of human Pol e stands in sharp contrast to the growing amount of information on the fidelity of the yeast enzyme. One important tool to determine the contribution of a DNA polymerase to genome stability is to identify and characterize mutant derivatives of DNA polymerases that decrease overall DNA synthesis fidelity. This project proposes to identify and characterize mutant alleles of human Pol e that
suppress Pol e checkpoint activation in vivo through decreased replication fidelity, altered lesion bypass
efficiency and fidelity, or some combination of these activities. In addition, these alleles will be used to probe for Pol e function in replication and repair in vivo.
Both yeast and human Pol e have been identified in multi-protein complexes involved in replication,
transcription and recombination, and have been observed to colocalize in vivo with regions of active
replication. These interactions remain poorly characterized and not well understood, especially for the human enzyme. This project proposes to determine the Pol ¿ protein interaction network by using
recombinant Pol e to probe for Pol e interaction partners and characterize the functional significance of these
interactions.
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批准号:8118527
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项目类别:
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资助金额:$24.88万
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依托单位:
Roles of Human DNA Polymearse Epsilon in Mutagenesis and Genome Stability
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批准号:7879695
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资助金额:$24.85万
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依托单位:
FIDELLITY OF HUMAN POLYMERASE EPSILON
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批准号:8168375
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项目类别:
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资助金额:$8.88万
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财政年份:2004
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负责人:Zachary F Pursell
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依托单位:
FIDELLITY OF HUMAN POLYMERASE EPSILON
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项目类别:
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资助金额:$7.1万
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财政年份:2004
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负责人:Zachary F Pursell
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依托单位:
海外基金