Post-Translational Events Underlying the KSHV vGPCR Pathogenesis
Post-Translational Events Underlying the KSHV vGPCR Pathogenesis
批准号:
8246529
负责人:
Pinghui Feng
金额:
$32.98万
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:
2009-06-10 至 2014-04-30
关键词:
ApoptosisBiochemicalBiologicalBiological AssayCell DeathCellsComplexDisease ProgressionDominant-Negative MutationEndoplasmic Reticulum Degradation PathwayEukaryotic CellEventG-Protein-Coupled ReceptorsGeneticHerpesviridaeHerpesviridae InfectionsHumanHuman Herpesvirus 8Immunologic Deficiency SyndromesInfectionInflammationKaposi SarcomaLesionLinkLymphomaLyticLytic PhaseMalignant NeoplasmsMammalian CellMediatingMembrane ProteinsMissionMolecularMulticentric Angiofollicular Lymphoid HyperplasiaPapillomaPathogenesisPathway interactionsPatientsPost-Translational RegulationProteinsProteolysisRegulationRetinalRhodopsinRoleSignal TransductionSystemTumorigenicityUbiquitinationViralViral ProteinsVirusabstractingeffusiongammaherpesvirusgrowth promoting activitylytic replicationmouse modelmulticatalytic endopeptidase complexoverexpressionp97 ATPasepost-doctoral trainingprotein degradationprotein misfoldingresearch studytumortumorigenesistumorigenicubiquitin-protein ligasevirus host interaction
中文摘要
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英文摘要
Abstract/Summary
Title: Post-translational events underlying the pathogenesis of vGPCR
Human gamma herpesviruses such as Kaposi's sarcoma (KS)-associated
herpesvirus (KSHV) are often associated with infection of immunodeficiency virus-1 and
induce tumor in patients. In addition to latent proteins, KSHV lytic proteins have been
demonstrated to possess tumorigenic or growth-promoting activities, indicating that lytic
replication may contribute to the disease progression of KS and other KSHV-associated
malignancies. One intriguing example is the KSHV-encoded G protein-coupled receptor
(vGPCR). Although tumorigenicity and signaling events downstream of vGPCR are
better defined, it is not clear how vGPCR is regulated. In fact, continuous expression of
constitutively active GPCRs (e.g., vGPCR or retinal rhodopsin) induced cell death in
mammalian cells, raising the possibility that KSHV has evolved mechanisms to control
vGPCR expression and activity.
Our preliminary study discovered that the K7 membrane protein interacts with
vGPCR and induces its proteasome degradation. Furthermore, K7 retains vGPCR in the
ER and increases vGPCR ubiquitination. We hypothesize that K7 induces the ER-
associated degradation of vGPCR and functions as a negative regulator for vGPCR
tumorigenesis. Our study proposes to elucidate the molecular action of K7 in routing
vGPCR to the ER-associated degradation. We will employ both genetic and biochemical
assays to identify cellular factors and characterize their roles in K7-induced vGPCR
degradation. These experiments not only will elucidate the intracellular regulation of
vGPCR, but also will reveal cellular molecules that can be potentially targeted for anti-
viral therapy.
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