Role of viral and cellular recombination proteins in HSV DNA replication
Role of viral and cellular recombination proteins in HSV DNA replication
批准号:
7168441
负责人:
SANDRA K WELLER
金额:
$28.74万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-01-15 至 2010-12-31
关键词:
Active SitesAddressAffectAntiviral AgentsAntiviral TherapyBiochemicalBiologicalBiological AssayCancer BiologyCell Cycle CheckpointCell LineCell physiologyCellsComplexConditionDNADNA BindingDNA DamageDNA RepairDNA Repair PathwayDNA Sequence RearrangementDNA biosynthesisDNA chemical synthesisDefectDefective VirusesDevelopmentDiseaseEndopeptidasesFilamentFluorescenceFrequenciesGeneticGenetic RecombinationGenomeGenome StabilityGenomicsGoalsGrowthHerpesviridaeHerpesvirus 1HumanImmunocompetentImmunocompromised HostIn VitroIndividualInfectionKnock-outLeadLesionMalignant NeoplasmsMammalian CellMapsMeasuresMethodsMonitorMutationPathway interactionsPatientsPeptide HydrolasesPlasmidsProcessProteinsProteolysisPulsed-Field Gel ElectrophoresisRecruitment ActivityResistanceRoentgen RaysRoleSS DNA BPSideSimplexvirusSiteSmall Interfering RNASpectrum AnalysisStressStructureTestingTransfectionViralViral ProteinsVirusVirus DiseasesWorkanalytical ultracentrifugationbasedesignfascinategene replacementhomologous recombinationimprovedin vivomutantneonatepathogenpreventrecombinaserecombinational repairrepairedresponsespleen exonucleasestoichiometry
中文摘要
描述(由申请方提供):单纯疱疹病毒(HSV-1)是一种重要的人类病原体,可导致免疫功能正常患者的自限性粘膜皮肤病变以及新生儿和其他免疫功能低下个体的潜在致死性感染。在这个建议中,我们将测试的假设,HSV利用重组依赖性复制复制其基因组使用病毒和细胞蛋白。我们认为,HSV已经进化到与细胞修复和重组机制相互作用,细胞通常使用这些机制来应对DNA损伤和其他应激因素。用于监测和修复受损DNA的细胞机制对于维持基因组稳定性至关重要。暴露于DNA损伤剂的哺乳动物细胞诱导细胞周期检查点和DNA修复途径,其用于保护细胞免于突变和基因组重排。这些途径的缺陷会导致癌症等疾病。疱疹病毒与其宿主共同进化,并发展出迷人的侧步、颠覆和在某些情况下受益于宿主细胞反应的方式。在这个建议中,我们将测试的假设,HSV使用同源重组(HR)修复途径,为自己的利益。我们的初步工作表明,HSV使用病毒和细胞蛋白的组合来进行产生后代基因组所需的重组依赖性复制。我们以前已经证明,病毒5'到3'核酸外切酶,UL 12和主要的单链DNA结合蛋白,ICP 8,可以作为一个两个亚基重组酶。我们建议继续我们的研究,这种病毒重组酶和测试的假设,HSV病毒和细胞途径复制其基因组。目标1将检验重组对于生产性病毒感染是必不可少的假设;目标2将检验ICP 8和UL 12在感染期间一起工作的假设;目标3将检验细胞重组蛋白被募集到病毒复制位点和活性复制中心并与之相互作用的假设。将采用遗传、生物物理、生物化学和细胞生物学方法相结合的方法。HSV-1是一种主要的人类病原体,对DNA复制的机制知之甚少。我们已经提出,病毒利用了一些与细胞用于防止遗传不稳定和癌症相同的机制。由于DNA复制是抗病毒药物的主要靶点,因此必须充分了解这一过程中的关键参与者,以便制定更好的治疗策略。在这个提议中,我们将测试HSV使用病毒和细胞蛋白的组合来进行DNA复制的假设。
英文摘要
DESCRIPTION (provided by applicant): Herpes simplex virus (HSV-1) is an important human pathogen responsible for self-limiting mucocutaneous lesions in immunocompetent patients and potentially lethal infections in neonates and other immunocompromised individuals. In this proposal we will test the hypothesis that HSV utilizes recombination-dependent replication to replicate its genome using both viral and cellular proteins. We propose that HSV has evolved to interact with the cellular repair and recombination machinery which the cell normally uses to respond to DNA damage and other stress factors. The cellular machinery designed to monitor and repair damaged DNA is essential for maintaining genomic stability. Mammalian cells exposed to DNA damaging agents induce cell cycle checkpoints and DNA repair pathways that serve to protect the cell from mutations and genomic rearrangements. Defects in these pathways lead to diseases such as cancer. Herpesviruses have coevolved with their hosts and developed fascinating ways of side stepping, subverting and in some cases benefiting from host cell responses. In this proposal we will test the hypothesis that HSV uses the homologous recombination (HR) repair pathway for its own benefit. Our preliminary work suggests that HSV uses a combination of viral and cellular proteins to carry out recombination-dependent replication needed to generate progeny genomes. We have previously demonstrated that the viral 5' to 3' exonuclease, UL12 and the major single strand DNA binding protein, ICP8, can function as a two-subunit recombinase. We propose to continue our studies of this viral recombinase and to test the hypothesis that HSV viral and cellular pathways for replication of its genome. Aim 1 will test the hypothesis that recombination is essential for productive viral infection; Aim 2 will test the hypothesis that ICP8 and UL12 work together during infection; and Aim 3 will test the hypothesis that cellular recombination proteins are recruited to and interact with viral preprelicative sites and active replication centers. A combination of genetic, biophysical, biochemical and cell biological approaches will be used. HSV-1 is a major human pathogen, and little is known about the mechanism of DNA replication. We have proposed that the virus utilizes some of the same machinery that cells use for preventing genetic instability and cancer. Since DNA replication is a major target for antiviral drugs, it is important to fully understand the key players in this process in order to develop better strategies for treatment. In this proposal we will test the hypothesis that HSV uses a combination of viral and cellular proteins to carry out DNA replication.
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