Eicosanoids and lung macrophage antimicrobial mechanisms
Eicosanoids and lung macrophage antimicrobial mechanisms
批准号:
7649772
负责人:
MARC L PETERS-GOLDEN
金额:
$38.3万
依托单位国家:
美国
项目类别:
财政年份:
1997
资助国家:
美国
项目状态:
已结题
起止时间:
1997-07-10 至 2013-07-31
关键词:
1-Phosphatidylinositol 3-Kinase1-Phosphatidylinositol 4-KinaseAddressAdenylate CyclaseAlveolar MacrophagesArachidonic AcidsAttentionBindingBiologicalCandida albicansCategoriesCell surfaceCellsCharacteristicsChromosomesChromosomes, Human, Pair 10CouplingCyclic AMPCyclic AMP-Dependent Protein KinasesDataDefense MechanismsDevelopmentDiamondDinoprostoneDiseaseDistalEicosanoid ReceptorEicosanoidsEventFamilyFigs - dietaryFundingG-Protein-Coupled ReceptorsGuanine Nucleotide Exchange FactorsGuanosine Triphosphate PhosphohydrolasesHealthHost DefenseIgG ReceptorsImmuneImmune responseImmunoglobulin GImmunologicsInfectionIngestionLTB4R geneLeukotriene B4Leukotriene D4LeukotrienesLigationLipidsLungMediatingMembraneMembrane MicrodomainsMicrobeMolecularMonomeric GTP-Binding ProteinsNatural ImmunityOrganPTEN genePathway interactionsPhagocytesPhagocytosisPhosphatidylinositolsPhosphoric Monoester HydrolasesPhosphotransferasesPneumoniaProstaglandinsProtein IsoformsProtein Kinase CProteinsRattusReceptor SignalingRegulationResearchRoleSecond Messenger SystemsSignal PathwaySignal TransductionTestingYeastsantimicrobialarachidonatecitrate carrierclinically relevanthuman WFDC2 proteinimmune functioninsightkillingslipid mediatormacrophagemannoproteinsmannose receptormicrobialopsonin receptorphosphatidylinositol receptorpublic health relevancereceptorrhosecond messenger
中文摘要
描述(由申请人提供):肺部感染对全球健康的影响比任何其他类别的疾病都大,迫切需要更好地了解肺部的抗菌防御。肺泡巨噬细胞(AMs)是远端肺的固有免疫防御者,这些细胞的免疫功能通常与其他吞噬细胞有很大不同。在感染过程中产生的物质中,花生四烯酸酯(类二十烷酸)衍生的脂质介质,包括白三烯(lt) B4 (LTB4)和D4 (LTD4)以及前列腺素E2 (PGE2),已成为先天免疫功能的重要调节剂。类二十烷酸通过连接细胞表面的特异性G蛋白偶联受体并启动信号传导事件起作用。我们已经证明LTBB4(通过BLT受体1 [BLT1])和LTD4(通过半胱氨酸LT受体1 [cysLT1])促进AM吞噬和杀死igg -调理微生物的能力,而PGE2(通过E前列腺素受体2和4 [EP2和EP4])抑制AM吞噬和杀死igg -调理微生物的能力。然而,这些类二十烷酸的细胞内作用机制尚不完全清楚。虽然这两类LT都促进am的先天免疫功能,但它们通过不同的信号通路起作用。同样,连接EP2和EP4后AM先天免疫功能的抑制是通过不同的途径介导的。随着针对特定类二十烷酸受体的药物的开发正在迅速进行,了解这种靶向治疗对肺部抗菌防御的作用是很重要的。该项目旨在了解这些类二十烷影响由opsonic IgG受体- Fc3受体(FcR)触发的AM信号通路中的关键事件的机制。为了比较,将研究与通过甘露糖受体(MR)摄入酵母白色念珠菌相关的事件。我们将重点关注的中心信号事件是:1)磷酸肌醇3-激酶(PI3K)/磷酸酶和10号染色体上缺失的张力蛋白同源物(PTEN)的激活;2)蛋白激酶C (PKC)的异构体;3)小gtp酶。假设是,BLT1与cyyslt1和EP2与EP4的连接对吞噬受体触发的信号成分的不同影响反映了这些受体在脂筏膜微域的不同定位,以及它们与两种不同的环AMP效应物-蛋白激酶A (PKA)和环AMP激活的交换蛋白(Epac-1)的不同偶联。利用原代大鼠AMs,我们将确定以下具体目标:1)PKA和Epac-1对FcR-和mr诱导的信号事件的调控;2) FcR、MR及其下游信号成分在脂筏中的定位以及脂筏在吞噬和杀伤中的作用;3) PKA与Epac-1和脂质筏定位在解释BLT1与cyyslt1连接对FcR和MR信号的不同调节中的作用;4) PKA与Epac-1和脂质筏定位在解释EP2与EP4连接对FcR和MR信号的分化调节中的作用。这些拟议的研究将为AM抗菌功能提供基本见解,并为理解和调节肺部先天免疫提供临床相关框架。公共卫生相关性:肺炎对全球健康的影响超过任何其他类型的疾病,因此必须了解肺部如何保护自己免受感染。脂质介质被称为类二十烷,包括白三烯和前列腺素,对肺中关键免疫细胞肺泡巨噬细胞的抗微生物防御功能发挥强大而相反的作用。本研究旨在了解这些类二十烷对肺泡巨噬细胞的作用背后的细胞内事件,从而为肺防御机制的调节提供新的临床相关见解。
英文摘要
DESCRIPTION (provided by applicant): Infections of the lung have a greater impact on global health than any other category of disease, and there is an urgent need to better understand antimicrobial defense of the lung. Alveolar macrophages (AMs) are the resident innate immune defenders of the distal lung, and the immunologic repertoire of these cells often differs substantially from that of other phagocytic cells. Among the substances elaborated during infection, lipid mediators derived from arachidonate (eicosanoids), including leukotrienes (LTs) B4 (LTB4) and D4 (LTD4) as well as prostaglandin E2 (PGE2), have emerged as important modulators of innate immune function. Eicosanoids act by ligating specific G protein-coupled receptors on the cell surface and initiating signaling events. We have shown that both LTBB4 (via B LT receptor 1 [BLT1]) and LTD4 (via cysteinyl LT receptor 1 [cysLT1]) promote, while PGE2 (via E prostanoid receptors 2 and 4 [EP2 and EP4]) inhibits, AM capacity for phagocytosis and killing of IgG-opsonized microbes. However, the intracellular mechanisms by which these eicosanoids act are incompletely understood. Although both LT classes promote innate immune functions in AMs, they act via distinct signaling pathways. Likewise, suppression of AM innate immune functions following ligation of EP2 and EP4 is mediated by distinct pathways. As development of pharmacologic agents targeting specific eicosanoid receptors is proceeding rapidly, it is important that the effects of such targeted therapies on antimicrobial defenses of the lung are understood. This project seeks to understand the mechanisms by which these eicosanoids influence key events in the AM signaling pathway triggered by the receptor for opsonic IgG - the Fc3 receptor (FcR). For comparison, events associated with ingestion of the yeast Candida albicans via the mannose receptor (MR) will be studied. The central signaling events we will focus on are activation of: 1) phosphoinositide 3-kinase (PI3K)/phosphatase and tensin homolog deleted on chromosome 10 (PTEN); 2) isoforms of protein kinase C (PKC); and 3) small GTPases. The hypothesis is that divergent effects on these phagocytic receptor-triggered signaling components by ligation of BLT1 vs. cysLT1 and EP2 vs. EP4 reflect the differential localization of these receptors to lipid raft membrane microdomains and their differential coupling to two distinct cyclic AMP effectors - protein kinase A (PKA) and exchange protein activated by cyclic AMP (Epac-1). Employing primary rat AMs, we will address specific aims to determine: 1) regulation by PKA and Epac-1 of FcR- and MR-induced signaling events; 2) localization to lipid rafts of FcR, MR, and their downstream signaling components and the role of rafts in phagocytosis and killing; 3) the roles of PKA vs. Epac-1 and of lipid raft localization in explaining divergent modulation of FcR and MR signaling by BLT1 vs. cysLT1 ligation; 4) the roles of PKA vs Epac-1 and of lipid raft localization in explaining divergent modulation of FcR and MR signaling by EP2 vs. EP4 ligation. These proposed studies will provide fundamental insights into AM antimicrobial function, and a clinically relevant framework for understanding and modulating innate immunity in the lung. PUBLIC HEALTH RELEVANCE: Pneumonia has more of an impact on global health than any other category of disease, making it imperative to understand how the lung defends itself from infection. Lipid mediators termed eicosanoids and including leukotrienes and prostaglandins exert potent and opposing effects on the antimicrobial defense functions of the key immune cell in the lung, the alveolar macrophage. The proposed research aims to understand the intracellular events that underlie these eicosanoid effects on alveolar macrophages, thereby providing new clinically relevant insights into regulation of lung defense mechanisms.
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Control of fibroblast function by prostaglandin E2 and plasminogen activation
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批准号:8080237
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资助金额:$37.97万
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财政年份:2009
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DEFICIENT CYCLOOXYGENASE EXPRESSION IN IPF FIBROBLASTS
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批准号:6410566
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依托单位:
DEFICIENT CYCLOOXYGENASE EXPRESSION IN IPF FIBROBLASTS
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批准号:6110713
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负责人:MARC L PETERS-GOLDEN
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依托单位:
LEUKOTRIENES AND PULMONARY ANTIBACTERIAL DEFENSE
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资助金额:$22.0万
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依托单位:
Eicosanoids and Lung Macrophage Antimicrobial Mechanisms
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批准号:7244319
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资助金额:$32.2万
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