A RasGAP-microRNA connection in cardiac hypertrophy
A RasGAP-microRNA connection in cardiac hypertrophy
批准号:
7758324
负责人:
Maha Abdellatif
金额:
$39.0万
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:
2009-01-15 至 2012-12-31
关键词:
AddressAdenovirusesAgeBindingBinding ProteinsCardiacCardiovascular DiseasesCell NucleusCellsComplementary DNAComplexCytoskeletonCytosolDataDevelopmentDown-RegulationElementsEndothelinEventExhibitsFLNC geneFeedbackFibronectinsFigs - dietaryGene ExpressionGene TargetingGenesGrowthGrowth FactorHeartHeart HypertrophyHydrolysisHypertrophyLeftMalignant NeoplasmsMediatingMembraneMessenger RNAMicroRNAsMinorMusMuscle CellsNuclear RNAOutcomePathway interactionsPhosphorylationPlayPost-Transcriptional RegulationProtein BindingRNA-Binding ProteinsRecombinantsRecruitment ActivityRegulationRegulator GenesReportingRepressionRoleSiteSomatomedinsStimulusStretchingThickTransgenesTransgenic MiceTranslationsUp-RegulationVentricularWorkfilaminin vivointegrin-linked kinasemouse modelprematurepressurepromoterpublic health relevanceras GTPase-Activating Proteinsresearch studytherapeutic target
中文摘要
描述(申请人提供):在这项提案中,我们将确定Ras GTP酶激活蛋白(RasGAP)在心肌肥厚过程中调节microRNA-1(miR-1)的作用。MIR-1是一种转录后基因表达调节因子,在工作超负荷、生长因子或RasGAP诱导肥大时急剧下调,这是心肌细胞生长所必需的结果。我们的初步数据表明,RasGAP SH3结合蛋白(G3BP)以RasGAP和Akt依赖的方式与miR-1结合。我们假设,肥大刺激诱导Akt介导的G3BP磷酸化,并随后被RasGAP-丝氨酸复合体募集。这使得它非常接近miR-1,在那里它结合并水解早熟的miR-1。随后,miR-1的下调导致其靶标上调,其中包括:RasGAP、CDK9、纤维连接蛋白、内皮素和胰岛素样生长因子等。这些基因在心肌肥厚的发生发展中起着关键作用。因此,我们的目标是:1)研究RasGAP介导的miR-1在心肌细胞肥大过程中下调的机制。为此,我们将利用培养的心肌细胞与重组cDNA、腺病毒和启动子构建物结合,使用STRAND作为肥大刺激:A.检测G3BP在miR-1转录后调控中的作用,B.检测Akt在RasGAP-G3BP调控的miR-1稳定性中的作用,C.研究细丝-C在RasGAP-G3BP招募中的作用,D.研究肥大和RasGAP激活的途径对miR-1转录和转录后调控的影响。目的2)研究RasGAP和miR-1在小鼠心肌肥厚中的作用。与公共健康相关的microRNA是新发现的心脏基因表达的调节因子。它们为心血管疾病提供了潜在的有希望的治疗靶点,就像在癌症中所做的那样。但首先有必要确定它们的基因靶点,并了解它们的调节和功能机制。在这项研究中,我们将探讨Ras GTP酶激活蛋白对miR-1的调节机制及其在诱导心肌肥厚中的作用。
英文摘要
DESCRIPTION (provided by applicant): In this proposal we will determine the role of Ras GTPase-activating protein (RasGAP) in regulating microRNA-1 (miR-1) during cardiac hypertrophy. MiR-1 is a post- transcriptional regulator of gene expression that is acutely down-regulated upon induction of hypertrophy by work overload, growth factors, or RasGAP, an outcome that is necessary for myocyte growth. Our preliminary data show that RasGAP SH3-binding protein (G3BP) binds miR-1 in a RasGAP- and Akt-dependent manner. We hypothesize that hypertrophic stimuli induce Akt-mediated G3BP phosphorylation and its subsequent recruitment by RasGAP-filamin complex. This brings it into close proximity to miR-1, where it binds and hydrolyzes premature miR-1. Subsequently, down-regulation of miR- 1 results in upregulation of its targets that include: RasGAP, Cdk9, fibronectin, endothelin, and insulin-like growth factor, among others. These genes play a critical role in the development of cardiac hypertrophy. Thus, our Aims are: 1) to study the mechanism of RasGAP-mediated down-regulation of miR-1 during myocyte hypertrophy. For this aim we will utilize cultured myocytes in conjunction with recombinant cDNA, adenoviruses, and promoter constructs, using stretch as a hypertrophic stimulus to: a. examine the role of G3BP in post-transcriptional regulation of miR-1, b. examine the role of Akt in RasGAP-G3BP-regulated miR-1 stability, c. examine the role of filamin-C in recruitment of RasGAP-G3BP, d. examine the effect of hypertrophy and the RasGAP- activated pathway on transcriptional vs. post-transcriptional regulation of miR-1. Aim 2) to study the role of RasGAP and miR-1 during cardiac hypertrophy in a mouse model. PUBLIC HEALTH RELEVANCE MicroRNA are newly discovered regulators of gene expression in the heart. They provide potentially promising therapeutic targets in cardiovascular diseases as they do in cancer. But first it is necessary to identify their gene targets and understand the mechanism of their regulation and function. In this proposal we will investigate the mechanism of regulation of miR-1 by Ras GTPase activating protein and its role in induction of cardiac hypertrophy.
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海外基金