Ribosomal Skipping Under Oxidative Stress in SLE
Ribosomal Skipping Under Oxidative Stress in SLE
批准号:
10685933
负责人:
Iwona Agnieszka Koenig
金额:
$35.24万
依托单位国家:
美国
项目类别:
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-07-01 至 2024-06-30
关键词:
AffectAgreementAmino AcidsAntioxidantsAutoantibodiesAutoimmuneAutoimmune DiseasesAutoimmunityB-LymphocytesCD19 geneCD3 AntigensCell LineCellsCellular Metabolic ProcessCellular StressChronicCysteineCytoplasmDNADataDendritic CellsDetectionDevelopmentDiseaseDisulfidesEnsureEnvironmental ExposureExposure toFunctional disorderGene ExpressionHomeostasisImmuneIndividualInitiator CodonInterferon Type ILengthLipidsLymphoid CellMessenger RNAMetabolicMetabolic dysfunctionMitochondriaMitochondrial MatrixModelingModificationMusMutationN-terminalNatural ImmunityOpen Reading FramesOxidantsOxidative StressParaquatPathologicPathway interactionsPatientsPeripheral Blood Mononuclear CellPlayPrevalencePrevalence StudyProcessProductionProteinsProteomePublishingRNARNA SplicingRNA, Ribosomal, 5SReactive Oxygen SpeciesRibosomal RNARibosomesRoleSerumSignal TransductionSignaling ProteinStressSyndromeSystemic Lupus ErythematosusT-LymphocyteTestingTranslation InitiationTranslational RegulationTranslationsUntranslated RNAVariantViralVirus DiseasesWorkbody systemdisulfide bondindexingmRNA Translationmitochondrial dysfunctionmitochondrial metabolismmonomermyxothiazolnoveloxidationpathogenpreventresponseribosome profiling
中文摘要
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英文摘要
SLE is a chronic autoimmune syndrome that can involve a variety of organ systems and frequently affects young
individuals. It has been suggested that uncontrolled oxidative stress in the cells of SLE patients contributes to
functional oxidative modifications of many proteins, lipids, and DNA, thereby triggering autoimmunity. However,
what role RNA oxidation plays in the regulation of translation and development of autoimmune diseases such as
SLE is not known. Under both normal and oxidative stress conditions, RNA oxidation levels are much higher
than DNA oxidation levels; however, available information on the potential effects of RNA oxidation is scarce
and despite the prevalence and importance of translational regulation, we have a limited view of how oxidative
stress affects translation and protein diversification. A major reason for the paucity of work on RNA oxidation is
the misconception that normal RNA turnover should diminish the effects of oxidized RNA on cell metabolism and
gene expression. However, because oxidation of RNA occurs in just a few minutes, and ribosomal and non-
coding RNAs persist in the cell for days, there is ample opportunity for oxidized RNA to have deleterious and
long-standing effects. Our scientific premise is that MAVS oligomerization-induced accumulation of 5S RNA at
the mitochondria ensures that this RNA is specifically oxidized. We propose that oxidized 5S RNA will promote
ribosomes to perform translation in a skipping mode, which will support translation of proteins that are normally
expressed under cellular stress of viral infection. We propose that, Aim1: In SLE patients, expression of a shorter
regulatory form of MAVS, which can suppress IFN-I secretion, is not present; Aim2: non-coding ribosomal RNA,
like 5S RNA in SLE patients, is oxidized and promotes ribosomal skipping; and Aim 3: performing ribosomal
profiling of SLE T cells will allow us to understand why oxidative stress associated with MAVS oligomerization
limits the translation of regulatory forms of innate immunity associated proteins.
期刊论文(2)
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会议论文
MAVS Aggregates Impair Cardiolipin Function and Mitochondrial Fission in SLE
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批准号:9921956
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项目类别:
-
资助金额:$24.3万
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财政年份:2019
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负责人:Iwona Agnieszka Koenig
-
依托单位:
Ribosomal Skipping Under Oxidative Stress in SLE
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批准号:9933193
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项目类别:
-
资助金额:$35.28万
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财政年份:2018
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负责人:Iwona Agnieszka Koenig
-
依托单位:
海外基金