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Metabolic Regulation in the Acute Phase

Metabolic Regulation in the Acute Phase
急性期的代谢调节
批准号:
7848181
负责人:
HYUNG D RYOO
金额:
$45.73万
依托单位国家:
美国
项目类别:
财政年份:
1993
资助国家:
美国
项目状态:
已结题
起止时间:
1993-02-01 至 2012-05-31
关键词:
AcuteAnimalsB-LymphocytesBypassCandidate Disease GeneCell DeathCell SurvivalCell TherapyCellsCessation of lifeCharacteristicsChimera organismClientComplementComplexCultured CellsDefectDevelopmentDiabetes MellitusDiseaseEmbryoEmbryonic DevelopmentEndoplasmic ReticulumEquilibriumEventExposure toGene ExpressionGene Expression ProfileGene TargetingGenesGluconeogenesisGoalsHepaticHomocysteineHomocystineHormonalHumanHyperhomocysteinemiaHypoxiaInjuryInsulin ResistanceIntestinal MucosaIschemiaIslets of LangerhansLigandsLightLiverMaintenanceMammalsMeasuresMediatingMetabolicMetabolic PathwayMultiple MyelomaMusMutant Strains MiceMutateMutationNutrientOrganellesOrganismPancreasPathway interactionsPharmaceutical PreparationsPhasePhosphorylationPhysiologicalPlacentaPlayPrimitive foregut structureProcessProductionProtein BiosynthesisProtein DephosphorylationProtein IsoformsProtein SecretionProteinsRecombinant ProteinsRecoveryRegulationRelative (related person)ResistanceRoleSecretory CellSignal PathwaySignal TransductionStressStress-Induced ProteinSystemTestingTherapeutic InterventionTimeTissuesToxic effectToxinTranscriptional RegulationTranslational RepressionTranslationsTrophoblastic CellYeastsarmbiological adaptation to stressdeprivationembryonic stem cellendocrine pancreas developmentendoplasmic reticulum stressgain of functiongene therapygenetic manipulationglycemic controlglycogen metabolismin vivointercellular communicationmutantplasma cell developmentpreventprogramsprotective effectrelating to nervous systemresearch studyresponsetool

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中文摘要
翻译
蛋白质分泌是所有细胞的基本功能。它在复杂中起着特别突出的作用
英文摘要
Protein secretion is an essential function in all cells. It plays a particularly prominent role in complex multiceltular organisms with hormonal, neural and immunological systems for intercellular communication. The endoplasmic reticulum (ER), which handles the early post-translational processing of secreted proteins tries to maintain a balance between the influx of client proteins and the capacity of the folding machinery. This equilibrium is easily perturbed by fluctuations in client protein load and by pathological events that impair ER function. Thus ER stress, a consequence of perturbing this equilibrium, occurs during hypoxia, nutrient deprivation or exposure to endogenous toxins such as homocysteine. ER stress is also likely to occur in secretory cells handling heavy client protein loads, such as 13cells in islets of Langerhans in insulin resistant humans. Signaling pathways responsive to ER stress are referred to collectively as the unfolded protein response (UPR) and they protect cells against ER stress by reducing client protein synthesis and by upregulating genes that increase the capacity of the secretory apparatus to process its client proteins. At the same time the UPR also activates signals and genes that promote cell death. The long term goals of this project are to understand what controls the survival versus death decision in the UPR and to understand how signaling in the UPR promotes secretory capacity. We will focus on three specific aims: To define the role of translational repression and recovery in ER stress and metabolic regulation by studying the impact of mutations that impair elF2(_ dephosphorylation on cell survival in ER stress and on the function of tissues such as liver and pancreas that engage in heavy secretion. To define the role of PERK signaling in survival or death of ER stressed cells by utilizing conditionally active forms of PERK that are uncoupled from ER stress. To define the role of IRE1 in development and maintenance of the secretory apparatus by studying secretion and gene expression in cells and tissues with experimentally-altered IRE1 function. A better understanding of the UPR will permit rational selection of targets for therapeutic interventions in diseases and pathological states associated with ER stress such as diabetes mellitus, ischemia and hyperhomocysteinemia. Tools to manipulate cells' secretory capacity may be used to enhance production of recombinant proteins in cultured cells or in gene therapy or cell therapy in vivo.
期刊论文(3)
专著(0)
科研奖励(0)
会议论文
Endoplasmic reticulum thiol oxidase deficiency leads to ascorbic acid depletion and noncanonical scurvy in mice.
内质网硫醇氧化酶缺乏会导致小鼠抗坏血酸耗竭和非范围的坏血病。
DOI: 10.1016/j.molcel.2012.08.010
发表时间: 2012-10-12
期刊: MOLECULAR CELL
影响因子: 16
作者: [Zito, Ester, Hansen, Henning Gram, Yeo, Giles S. H., Fujii, Junichi, Ron, David]
通讯作者: Ron, David
DOI: 10.1016/j.celrep.2013.09.046
发表时间: 2013-11-14
期刊: Cell reports
影响因子: 8.8
作者: [Coelho DS, Cairrão F, Zeng X, Pires E, Coelho AV, Ron D, Ryoo HD, Domingos PM]
通讯作者: Domingos PM
Translational control of stress response signaling
Translation control of stress response and innate immunity
Quality control mechanisms against misfolded rhodopsins in Drosophila.
Unfolded Protein Response in Eye Development and Disease
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