Role of IQGAP and Microtubule Motors in MLV Infection
Role of IQGAP and Microtubule Motors in MLV Infection
批准号:
8667737
负责人:
STEPHEN Paine GOFF
金额:
$20.77万
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:
Acquired Immunodeficiency SyndromeActinsAntiviral AgentsBehaviorBindingBypassCalmodulinCell NucleusCell membraneCellsCellular MorphologyCollaborationsComplexCytoplasmCytoskeletonDCTN2 geneDNADominant-Negative MutationDynein ATPaseEventFeedbackFluorescenceFrequenciesGTP BindingGaggingGammaretrovirusGenomeGluesGuanosine Triphosphate PhosphohydrolasesHIV-1ImageIncidenceInfectionInsertional ActivationsInstructionKnowledgeLearningLifeLife Cycle StagesLinkLocationMediatingMembraneMicroinjectionsMicrotubule StabilizationMicrotubule-Organizing CenterMicrotubulesMitoticModelingModificationMoloney Leukemia VirusMonomeric GTP-Binding ProteinsMotionMotorMovementMurine leukemia virusMusMutationNeuritesOutputPhasePhosphorylationProcessProtein FragmentProtein IsoformsProteinsProto-OncogenesProvirusesRNA InterferenceRegulationRetroviridaeReverse TranscriptionRodentRoleScaffolding ProteinStagingStudy SubjectT-Cell LeukemiaTestingTimeViralViral ProteinsViral load measurementViremiaVirionVirusVirus DiseasesVirus ReplicationWorkcell motilitycellular imagingdynactindynein light chaingag Gene Productsgene replacementgene therapyhuman diseaseinhibitor/antagonistinsightleukemiamutantpolymerizationpolypeptidepreventprogramsreceptorresearch studytooltraffickingviral DNAviral RNA
中文摘要
Moloney小鼠白血病病毒(MLV)是一种典型的γ -逆转录病毒,可在近10天内复制到高滴度
英文摘要
Moloney murine leukemia virus (MLV) is a prototypical gammaretrovirus that replicates to high titer in neariy
all mitotic rodent cells, causes a persistent viremia in infected mice, and induces a T-cell leukemia at a high
incidence through insertional activation of host protooncogenes. Much of what we know about retrovirus
replication was first learned through the study of the simple viruses such as the MLVs. In the eariy phases of
infection, these viruses enter the cell through specific receptors, synthesize a DNA copy of the viral RNA
genome by reverse transcription in the cytoplasm, direct the movement ofthe resulting preintegration
complex (PIC) into the nucleus, and integrate the viral DNA into the host genome to form the provirus. In the
late phases this DNA is expressed to form viral RNAs and proteins, and progeny virions are assembled at
the plasma membrane and released to begin a new infectious cycle. In this project we propose to examine
the early post-entry events of infection, the most pooriy characterized portion ofthe viral life cycle, focusing
on a key host protein, IQGAP, microtubules, and dynein motors. We have previously identified IQGAPI as a
major host protein interacting with the Moloney MuLV Gag matrix protein (MA), and have documented the
critical importance of that interaction for virus replication. The IQGAPs are large cytoskeletal scaffolding
proteins involved in the regulation of cell motility and morphology, and are noteworthy in binding and
regulating both actin and microtubule networks. They integrate multiple inputs (especially from small
GTPases) and produce multiple outputs, including stabilization of microtubules and capture of microtubule
ends. We will determine the role ofthe IQGAPs in MLV infection, and the precise time and step in the life
cycle at which they act. Using live-cell imaging of fluorescence-tagged virions, we will examine the trafficking
of MLV mutants that do not bind IQGAP, and of wild-type virus blocked by dominant-negative fragments of
IQGAP, to determine whether virions fail to be properly delivered to microtubules. We will test for the
importance of phosphorylation of IQGAP, thought to be mediated by PKCe, in normal virus trafficking.
Finally, we will test the key subunits of the dynein motor and dynactin for their roles in movement of the MLV
PICs along both stable and dynamic microtubules. With the help of our cell biologist colleagues in this
program, we hope to fill in a majorgap in our current understanding of the MLV life cycle.
RELEVANCE (See instructions):
Retroviruses are agents of serious human diseases, including leukemias and AIDS, and conversely hold out
great promise as tools for gene therapy. Recent work has shown that these viruses are critically dependent
on the cytoskeleton and microtubules (MTs) for their intracellular trafficking. In this proposal we aim to define
the role of particular MT regulators and motors in eariy steps of MLV infection. Deeper understanding of
these processes will provide new insights into retrovirus replication, potentially define new antiviral targets
and increase our knowledge of trafficking of cargos on MTs.
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批准号:10092949
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资助金额:$24.3万
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财政年份:2020
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负责人:STEPHEN Paine GOFF
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依托单位:
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资助金额:$20.0万
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财政年份:2013
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资助金额:$20.0万
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资助金额:$13.5万
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依托单位:
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资助金额:$22.84万
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CORE--TISSUE CULTURE, VIRUS AND ANTIBODY FACILITY
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资助金额:$22.84万
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财政年份:2002
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TARGETED MUTATIONS IN THE ABL TYROSINE KINASE GENE
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资助金额:$15.94万
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依托单位:
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项目类别:
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依托单位:
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依托单位:
CORE--TISSUE CULTURE, VIRUS AND ANTIBODY FACILITY
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项目类别:
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资助金额:$11.73万
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负责人:STEPHEN Paine GOFF
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依托单位:
ABI-1 GENE PRODUCT IN SIGNAL TRANSDUCTION & TRANSFORMATION BY VABL & BCR-ABL
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批准号:6103392
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项目类别:
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资助金额:$11.73万
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负责人:STEPHEN Paine GOFF
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依托单位:
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资助金额:$15.25万
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项目类别:
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资助金额:$11.73万
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负责人:STEPHEN Paine GOFF
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依托单位:
TARGETED MUTATIONS IN THE ABL TYROSINE KINASE GENE
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资助金额:$15.25万
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负责人:STEPHEN Paine GOFF
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依托单位:
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项目类别:
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资助金额:$19.89万
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依托单位:
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