Mechanism of APOBEC3-Mediated Innate Immunity to HIV-1
Mechanism of APOBEC3-Mediated Innate Immunity to HIV-1
批准号:
8304277
负责人:
YONG-HUI ZHENG
金额:
$10.38万
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-07-01 至 2013-06-30
关键词:
Adaptor Signaling ProteinAddressAmerican Society of HematologyAnti-Retroviral AgentsArchitectureClinicalCollaborationsCullin 5 ProteinCytidine DeaminaseDevelopmentFamilyGenetic PolymorphismGoalsHIVHIV InfectionsHIV-1HumanHuman ActivitiesImmunityImpairmentInfectionIntegration Host FactorsKnowledgeLeadLibrariesManuscriptsMediatingModalityMutationNatural ImmunityPaperPathogenesisPathway interactionsPostdoctoral FellowProcessProteinsPublishingResearchResearch PersonnelRetroviridaeRoleTrainingUbiquitinVaccinesViralViral Reverse TranscriptionWorkacrosome stabilizing factorantiretroviral therapybasechemotherapycofactorcombatexpectationgenetic analysisimprovedin vivoinhibitor/antagonistinnovationmRNA Expressionmembermulticatalytic endopeptidase complexnovelnovel therapeuticsparticleprogramsubiquitin-protein ligase
中文摘要
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英文摘要
Recent advances on retroviral research that members of APOBEC3 (A3) subfamily proteins potently
blocks replication of retroviruses have opened a new avenue for the development of antiretroviral therapy for
human immunodeficiency virus type 1 (HIV-1) infection. This subfamily includes ASA,A3B, A3C, A3DE,
ASF, A3G and ASH, which belong to the cytidine deaminase family. They are incorporated into viral particles
during viral assembly and disrupt viral reverse transcription to inhibit viral replication. As a counteraction,
HIV-1 produces a viral infectivity factor, Vif,to destruct most of the A3 proteins via the proteasomal pathway
by serving as a bridge between these proteins and a Cullin 5-based E3 ubiquitin ligase. Although these
discoveries are exciting, the field desires for further understanding of how this AS-mediated immunity blocks
retroviral infection and why it is so vulnerable to Vif. Our long-term goal is to understand how host factors
that contribute to the innate immunity to retroviral infection can be effectively targeted for improved treatment
of HIV-1 infection. Our objective in this proposal is to further study the antiretroviral mechanism of A3 protein
and the process of their proteasomal degradation triggered by Vif. Our rationale is that a new anti-HIV-1
therapy could be developed if we can find a strategy to express A3 proteins that become insensitive to Vif.
We propose the following three specific aims: 1) To study the antiretroviral activity of human ASH; 2) To
study the antiretroviral cofactor for A3G; 3) To study the ubiquitin-independent proteasomal degradation of
A3G. This project is innovative in that, it offers an opportunity to fully define the architecture ofAS-nnediated
antiretroviral immunity by understanding the function of ASH. It will significantly advance our knowledge by
precisely defining the mechanisms related to A3 antiretroviral activity and their degradation in proteasomes.
At the completion of this project, it is our expectation that we will be able to not only address these
fundamental issues, but also demonstrate the feasibility to employ this immunity to combat HIV-1 infection.
Such findings will contribute to a more effective modality for the treatment of HIV infection to be used in
conjunction with other chemotherapy and vaccines.
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资助金额:$4.9万
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依托单位:
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依托单位:
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依托单位:
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批准号:7414114
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资助金额:$32.36万
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海外基金