Glioma induced alterations in neuronal transcription and translation
Glioma induced alterations in neuronal transcription and translation
批准号:
8920180
负责人:
Peter Canoll
金额:
$8.0万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-09-15 至 2016-08-31
关键词:
AddressAffectBrainBrain NeoplasmsCell CommunicationCellsClinicalDataDevelopmentDiseaseEngineeringEpilepsyExperimental ModelsFutureGene CombinationsGene ExpressionGene ProteinsGenesGenetic TranscriptionGlioblastomaGliomaHealthHumanInvadedInvestigational TherapiesLaboratoriesLeadLinkMeasuresMessenger RNAMethodologyMethodsModelingMolecularMolecular ProfilingMusMutationNeuronal DysfunctionNeuronsPatientsPatternPhysiologyPlatelet-Derived Growth FactorPlayPrimary Brain NeoplasmsProtein BiosynthesisRNARetroviridaeRibosomal Protein S6Ribosomal ProteinsRibosomesRoleSamplingSeizuresSideStagingSystemTestingTissuesTranscriptTranslatingTranslational RegulationTranslationsTumor TissueWorkcell typedensitygenome-widehuman FRAP1 proteinhuman diseaseintercellular communicationmTOR Signaling Pathwaymouse modelneoplastic cellpreclinical studytargeted treatmenttherapy designtooltranscriptome sequencingtranscriptomicstumortumor microenvironmentwhite matter
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Diffusely infiltrating gliomas are among the most common type of primary brain tumors. The glioma cells widely invade the brain, where they intermingle with, and interact with, neurons in the tumor microenvironment. This leads to pathological alterations in neuronal physiology that can have devastating clinical consequences, such as uncontrollable seizures. Previous studies have implicated dysregulation of neuronal translation as a cause of epilepsy. However, little is known about the molecular alterations underlying the neuronal dysfunctions seen in glioma patients. As a first step towards addressing this important question, we propose to characterize the neuron-specific alterations in transcription and translation that occur in a mouse model of diffusely infiltrating glioma. We will
induce gliomas formation by injecting a PDGF expressing retrovirus into the subcortical white matter of CamKII-cre/RiboTag mice, which are engineered to express HA-tagged ribosomal protein (Rpl22) selectively in neurons. We will immunoprecipitate neuron-derived translating ribosomes from mouse brain tumor homogenate and sequence the mRNA footprints to quantify the number of ribosomes associated with each gene. We will also perform RNA-seq on mRNA from total tissue homogenate and apply a computational approach to deconvolve the composite expression data into cell-type specific profiles. Together, these analyses will enable us to calculate translation efficiency for every gene (ribosome density per transcript), which provides a sensitive measure of translational regulation. The experimental system developed in this proposal will provide a powerful tool for future studies to explore mechanistic questions about how glioma-neuron interactions cause seizures, as well as preclinical studies to test the effects target therapies designed to inhibit glioma-associated epilepsy.
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科研奖励(0)
会议论文
Mathematical Oncology Systems Analysis Imaging Center (MOSAIC)
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Diversity Supplement Ifediora: Image-based models of tumor-immune dynamics in glioblastoma
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依托单位:
Targeting Go and Grow in Glioblastoma
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财政年份:2020
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Targeting Go and Grow in Glioblastoma
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Mechanism of regulation of progenitor proliferation and transformation
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Mechanism of regulation of progenitor proliferation and transformation
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Targeting Kif11 to Treat Glioblastoma Invasion and Proliferation
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Targeting Kif11 to Treat Glioblastoma Invasion and Proliferation
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Molecular Motors and Glioma Dispersion
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依托单位:
Molecular Motors and Glioma Dispersion
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Molecular Motors and Glioma Dispersion
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依托单位:
海外基金