Global analysis of mRNA polarization in migrating endothelial cells
Global analysis of mRNA polarization in migrating endothelial cells
批准号:
7896580
负责人:
PAUL L FOX
金额:
$19.63万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-07-20 至 2011-05-31
关键词:
AbbreviationsActinsAddressAdhesionsAldehydesAntisense RNABackBindingBinding ProteinsBiochemicalBioinformaticsBlood VesselsCardiovascular systemCattleCell LineCell membraneCell surfaceCellsChimera organismCollecting CellConfocal MicroscopyDataDatabasesDetectionDevelopmentElectrophoretic Mobility Shift AssayElementsEndothelial CellsEndotheliumEnergy MetabolismEventFamilyFluorescence PolarizationFluorescence Recovery After PhotobleachingFluorescent in Situ HybridizationGaitGene ExpressionGenerationsGenomeGoalsGreen Fluorescent ProteinsHealedIndiumIndividualInjuryInterferon Type IIInterferonsInterventionInvestigationLabelLasersLeadMessenger RNAMethodologyMethodsMicroarray AnalysisMicrodissectionModelingMovementOxidoreductasePhosphatidylinositolsPolyethylene TerephthalatesPositron-Emission TomographyProcessProteinsRNARegulationReporterReportingReverse Transcriptase Polymerase Chain ReactionRoleSamplingSignal TransductionSiteStressStructureSystemTestingTherapeuticTranscriptTransfectionTranslationsUntranslated RegionsVascular Endothelial Growth FactorsWorkWound Healingactin 2basecell motilitydeletion analysishealinginhibitor/antagonistinjuredinorganic phosphateinsightmigrationnew therapeutic targetnovelprotein complexprotein protein interactionpublic health relevancerepairedresearch studyrestorationsecretion processskeletaltwo-dimensional
中文摘要
描述(由申请人提供):血管暴露于多种应力,这些应力可诱导内皮损伤,必须进行快速修复以恢复血管和整个心血管系统的正常功能。内皮细胞(EC)迁移在修复过程中以及新血管的形成中起着关键作用。多个细胞系统的极化,包括信号传导、粘附蛋白、质膜、分泌过程、细胞骨架排列等,对于诱导和控制细胞迁移至关重要。最近的研究表明,2-肌动蛋白mRNA,和其他几个运动相关的转录,积累在前面的运动细胞,但很少有人知道的极化mRNA和它们的共同定位元件的总合奏。我们的长期目标是了解mRNA极化的EC运动过程中的不对称性的发展的贡献,以及mRNA极化的平面运动细胞的机制。为了实现这一目标,我们已经启动了一个全面的,全球性的分析的mRNA,成为极化过程中EC迁移。我们已经应用激光显微切割方法来捕获细胞碎片从前方和后方地区的平面移动EC,模型代表伤口愈合过程。我们建议将这种显微切割方法与微阵列技术相结合,然后进行严格的生化研究,以解决以下假设:mRNA中的顺式元件决定其在平面迁移EC的前部和后部的定位,并负责将蛋白质靶向其功能位点。我们将通过追求以下具体目标来验证这一假设:(1)鉴定迁移EC中极化的新mRNA,以及(2)研究细胞迁移过程中负责mRNA极化的RNA元件。我们的研究将提供第一个全球性的分析mRNA定位在细胞迁移过程中,它将开始填补我们的理解细胞极化迁移过程中的重要空白。特别是,人们对诱导mRNA在细胞前部积累的RNA元件知之甚少,对在细胞后部积累的mRNA(及其功能元件)几乎一无所知。除了对我们理解细胞极化的机械贡献外,我们的工作还可以揭示对细胞运动调节的新见解,并有可能进行新的干预来改变运动性。例如,新的定位元件的鉴定提供了用于通过基于RNA的方法调节mRNA定位和细胞迁移的新的治疗靶标,例如,通过用靶向特定RNA元件的反义RNA寡聚物处理。最后,我们的工作可能提供并验证一种技术进步,这将允许在其他系统中对不对称mRNA进行全球分析。公共卫生相关性:血管暴露于多种应力下,这些应力可损伤血管壁的内皮细胞(EC)衬里。EC的后续迁移对于血管壁修复和正常血管功能的恢复至关重要。编码运动相关蛋白的信使RNA(mRNA)的极化是一个新发现的事件,可能有助于EC运动所需的细胞方向性。我们的研究将提供平面细胞迁移过程中mRNA极化的第一个全球性分析,它可能揭示新的治疗靶点,用于调节运动相关mRNA和细胞迁移的定位。
英文摘要
DESCRIPTION (provided by applicant): Blood vessels are exposed to multiple stresses that can induce injury to the endothelium, which must undergo rapid repair to restore normal function of the vessel and the entire cardiovascular system. Endothelial cell (EC) migration has a critical role in this repair process, as well as in formation of new blood vessels. Polarization of multiple cell systems, including signaling, adhesion proteins, plasma membrane, secretion processes, cyto- skeletal arrangement, etc., is crucial for induction and control of cell migration. Recent studies have shown that 2-actin mRNA, and several other motility-related transcripts, accumulated in the front of moving cells, but little is known about the total ensemble of polarized mRNAs and their common localization elements. Our long-term goal is to understand the contribution of mRNA polarization to the development of asymmetry during EC movement, and the mechanisms by which mRNAs are polarized in planar moving cells. To accomplish this goal, we have initiated a comprehensive, global analysis of the mRNAs that become polarized during EC migration. We have applied the laser microdissection methodology to capture cell fragments from forward and rearward regions of planar-moving EC, a model representing the wound-healing process. We propose to couple this microdissection method with microarray technologies, followed by rigorous biochemical investigation to address the following hypothesis: cis-elements in mRNAs determine their localization in both the front and back of planar-migrating EC, and are responsible for targeting proteins to their site of function. We will test this hypothesis by pursuing the following specific aims: (1) identify novel mRNAs polarized in migrating EC, and (2) investigate RNA elements responsible for mRNA polarization during cell migration. Our studies will provide the first global analysis of mRNA localization during cell migration, and it will begin to fill important gaps in our understanding of cell polarization during migration. In particular, little is known about the RNA elements that induce mRNAs to accumulate in the cell front and virtually nothing is known about mRNAs (and their functional elements) that accumulate in the cell rear. In addition to the mechanistic contribution to our understanding of cell polarization, our work can reveal new insights into the regulation of cell movement, and has the potential of new interventions to alter motility. For example, identification of novel localization elements presents novel therapeutic targets for modulating mRNA localization and cell migration by RNA-based approaches, for example, by treatment with antisense RNA oligomers targeting the specific RNA element. Finally, our work is likely to provide and validate a technological advance that will permit global analysis of asymmetric mRNA in other systems. PUBLIC HEALTH RELEVANCE: Blood vessels are exposed to multiple stresses that can injure the endothelial cell (EC) lining of the vessel wall. Subsequent migration of EC is critical for vessel wall repair and restoration of normal blood vessel function. Polarization of the messenger RNAs (mRNA) encoding movement-related proteins is a newly discovered event that may contribute to cell directionality required for EC movement. Our studies will provide the first global analysis of mRNA polarization during planar cell migration, and it may reveal novel therapeutic targets for modulating localization of motility-related mRNAs and cell migration.
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会议论文
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