Ferroptosis as a Death Mechanism in Lung Injury - Project 2
Ferroptosis as a Death Mechanism in Lung Injury - Project 2
批准号:
10204081
负责人:
Valerian E Kagan
金额:
$36.74万
依托单位:
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:
2014-01-03 至 2024-04-30
关键词:
AcuteAcute Lung InjuryAdult Respiratory Distress SyndromeAlveolar MacrophagesAnimalsApoptosisApoptoticArachidonate 15-LipoxygenaseBacterial PneumoniaBiological MarkersBrain DiseasesCardiolipinsCell DeathCell Death Signaling ProcessCellsCessation of lifeChronicClinicalComplexCytoprotective AgentDevelopmentEnvironmentEpithelialEpithelial CellsEventEvolutionExposure toHumanHydrogen PeroxideImmuneImmune responseImmunocompromised HostImmunosuppressionImpairmentIndividualInflammationInnate Immune ResponseKidney DiseasesLeadLipid PeroxidationLipidsLiver diseasesLungMembraneMitochondriaModelingMolecularMusOxidation-ReductionOxidative StressOxidesPathogenesisPathogenicityPathway interactionsPatientsPhosphatidylethanolaminePhospholipidsPlayPropertyProtein IsoformsPseudomonas aeruginosaPseudomonas aeruginosa infectionReactionReactive Oxygen SpeciesReportingRespiratory Tract InfectionsRoleSamplingScaffolding ProteinSignal TransductionSignaling MoleculeTestingVirulence FactorsVirulentWorkbasecell injurydesignepithelial injuryglutathione peroxidasein vivoinhibitor/antagonistlipidomicslung injurymacrophagemortalitynovelnovel therapeutic interventionnovel therapeuticsoxidationpathogenpathogenic bacteriaperoxidationpredictive markerpreventprogramsselenoenzymesmall molecule
中文摘要
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英文摘要
In ARDS, bacterial pathogens damage host cells, activate innate immune responses, and create a pro-oxidant
environment leading to cell death via one of the death programs. This Project will focus on a recently described
death program, ferroptosis, realized via Fe-dependent activation of lipid peroxidation under conditions of
deficiency of glutathione peroxidase 4 (GPX4), a seleno-enzyme uniquely capable of reducing phospholipid
hydroperoxides. We identified 15-hydroperoxy-arachidonoyl-phosphatidylethanolamines (15-HOO-AA-PE) as
specific lipid biomarkers of ferroptosis. We also discovered that complexes of 15-lipoxygenase (15LOX) with a
scaffold protein, PEBP1, play the major role in generating 15-HOO-AA-PE signals. We divulged ferroptosis as
a death program of the human pulmonary epithelium. Ferroptosis occurs in alternatively activated macrophages
with low levels of NO•/iNOS, thus causing immuno-suppression. Unexpectedly, we discovered that a common
Gram-negative pathogen, P. aeruginosa – that does not contain polyunsaturated phospholipid oxidation
substrates– expresses 15LOX (pLoxA) which oxidizes host polyunsaturated PE, generates 15-HOO-AA-PE and
causes ferroptosis in epithelial cells and macrophages independently of the endogenous host 15-LOX.
Ferroptosis-inducing pLoxA was detected in clinical P. aeruginosa isolates from ARDS patients. 15-HOO-AA-
PE were identified in the lung samples from severely immuno-compromised patients with ARDS. Thus, we
postulate the existence of a vicious cycle whereby inflammation/oxidative stress driven ferroptosis supported
by endogenous 15-LOX acts as the major contributor to immunosuppression that sets the stage for the
secondary P. aeruginosa infection of immune-impaired lung and further enhancement of ferroptosis by
exogenous bacterial pLoxA. We propose to design and use selective small molecule pLoxA inhibitors, which
will act as anti-ferroptotic agents thus representing new classes of pulmonary protectors. Aim 1 will reveal and
decipher pathogenic mechanisms through which reactions of phospholipid peroxidation catalyzed by isoforms
of endogenous mammalian 15-LOX or exogenous bacterial pLoxA – in conditions of GPX4/GSH deficiency –
lead to accumulation of hydroperoxy-phospholipids in murine lung epithelial cells (MLE) and alveolar
macrophages and establish molecular identity and ferroptotic properties of these products. By using redox
lipidomics we will identify and quantify 15-HOO-AA-PE biomarkers of ferroptosis in vivo using a two-hit model
of immunosuppression. We will also employ iNOS KO animals exposed to P. aeruginosa to reveal the role of
NO• as a regulator of pLoxA-driven AA-PE oxidation and ferroptotic death in the mouse lung vivo. In Aim 2, we
will design and develop selective inhibitors of pLoxA regulating P. aeruginosa-driven ferroptosis in epithelia and
macrophages as a new class of small-molecule cytoprotective agents preventing breach of the barrier and
immunosuppression.
期刊论文(0)
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Protein-Oxidized Phospholipid Interactions Determine Epithelial Cell Fate and Asthma Control
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依托单位:
Ferroptosis as a Death Mechanism in Lung Injury - Project 2
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批准号:10399560
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项目类别:
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资助金额:$36.74万
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财政年份:2014
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NANOTOX 2014, 7th International Nanotoxicology Congress
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Intra- and extra-cellular signaling by Cardiolipin in Lung injury
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资助金额:$38.03万
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财政年份:2014
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依托单位:
Oxidative Lipidomics Core
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资助金额:$20.13万
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Ferroptosis as a Death Mechanism in Lung Injury - Project 2
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批准号:10631057
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资助金额:$36.75万
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财政年份:2014
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负责人:Valerian E Kagan
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依托单位:
Lipids and Myeloid Cell Function in Cancer
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资助金额:$39.42万
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财政年份:2012
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依托单位:
Lipids and Myeloid Cell Function in Cancer
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财政年份:2012
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依托单位:
Imaging Mass Spectrometry for Oxidized Lipidomics in Acute Lung Injury
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Lipids and Myeloid Cell Function in Cancer
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资助金额:$40.22万
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财政年份:2012
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依托单位:
Imaging Mass Spectrometry for Oxidized Lipidomics in Acute Lung Injury
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批准号:8423711
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财政年份:2012
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依托单位:
Oxygenated Species of Cardiolipins as Biomarkers of Mitochondrial Dysfunction
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批准号:8691815
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资助金额:$33.75万
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财政年份:2011
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负责人:Valerian E Kagan
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依托单位:
Oxygenated Species of Cardiolipins as Biomarkers of Mitochondrial Dysfunction
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批准号:8334604
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项目类别:
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资助金额:$34.09万
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财政年份:2011
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Oxygenated Species of Cardiolipins as Biomarkers of Mitochondrial Dysfunction
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海外基金