Dissecting of the Tbx20 Regulatory Network
Dissecting of the Tbx20 Regulatory Network
批准号:
7373446
负责人:
Marcelo A. Nobrega
金额:
$40.69万
依托单位:
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:
2009-07-01 至 2011-06-30
关键词:
AddressBacterial Artificial ChromosomesBioinformaticsBiological AssayBiologyCardiacCardiac MyocytesCause of DeathChildCis-Acting SequenceClassificationCodeCommunitiesComplexCongenital AbnormalityDNADataDevelopmentDistantElementsEmbryoEmbryonic DevelopmentEngineeringEnhancersExonsExperimental DesignsFishesGene ExpressionGenesGeneticGenetic EngineeringGenetic TranscriptionGoalsGrowthHeartHumanIn VitroInborn Genetic DiseasesIndividualJunk DNALibrariesMapsMolecularMorphogenesisMusMutationPathway interactionsPatternPerformancePlasmidsPlayProcessPropertyProteinsReagentRegulator GenesRegulatory ElementReporterRoleScanningShuttle VectorsStereotypingStructureSystemTechniquesTestingTranscriptional RegulationTransgenic MiceTransgenic OrganismsZebrafishbasecardiogenesiscongenital heart disorderdesignhuman diseasein vivonovelresearch studytranscription factor
中文摘要
对协调心脏发育的遗传途径等级的认识仍然不完整,部分原因是难以确定心脏发生过程中基因区域表达所需的关键顺式作用序列。在这里,我们提出了一个综合系统来识别TBX20调控网络的关键成分,TBX20是一个在心脏发育中起重要作用的基因。为了实现这一目标,我们建议利用斑马鱼和小鼠体内报告基因试验的结合来鉴定TBX20位点的心脏增强子。我们将对TBX20基因座的增强子进行饱和扫描,系统地测试序列,而不考虑它们的进化保护模式,目的是确定在心脏发生过程中协调TBX20表达的关键增强子。我们将在胚胎发生期间对这些心脏增强子的空间和时间域进行详细的表征,从而对TBX20调控网络的组成部分有更广泛的了解。我们将测试每种增强子对TBX20正确表达的必要性。使用工程细菌人工染色体(BACs),我们将删除在心脏多个区域驱动表达的每个增强子。这个实验设计将使我们能够推断出调节网络中各个组成部分对TBX20适当的时间、空间和定量表达的必要性。
英文摘要
The recognition of the hierarchies of genetic pathways coordinating heart development remains incomplete, in part because of the difficulties to identify the critical cis-acting sequences that are required for the regionalized expression of genes during cardiogenesis. Here we propose an integrative system to identify the critical components of the regulatory network of TBX20, a gene that plays important roles in heart development. To achieve this, we propose to utilize a combination of an in vivo zebrafish and mouse reporter assay to identify heart enhancers in the TBX20 locus. We will carry out a saturation scan for enhancers in the TBX20 locus, systematically testing sequences regardless of their pattern of evolutionary conservation, with the goal of identifying the critical enhancers that coordinate TBX20 expression during cardiogenesis. We will carry out a detailed characterization of the spatial and temporal domains of these heart enhancers during embryogenesis, leading to a broad understanding of the components of the TBX20 regulatory network. We will test the necessity of each of these enhancers for the proper expression of TBX20. Using engineered Bacterial Artificial Chromosomes (BACs), we will delete each enhancer that drives expression in multiple domains of the heart. This experimental design will allow us to infer the necessity of individual components of the regulatory network for the proper temporal, spatial and quantitative expression of TBX20.
In summary, we will use zebrafish and mouse in vivo assays to characterize the cis-regulatory network that coordinates TBX20 expression during cardiogenesis, and evaluate how the individual components of the network orchestrate the dynamic and complex pattern of TBX20 expression.
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批准号:7851314
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资助金额:$43.68万
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In vivo reagents to identify functional noncoding sequences in the TCF7L2 locus
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In vivo reagents to identify functional noncoding sequences in the TCF7L2 locus
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依托单位:
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依托单位:
Generation and in vivo validation of cis-regulatory maps in eukaryotic genomes
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资助金额:$48.68万
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依托单位:
Generation and in vivo validation of cis-regulatory maps in eukaryotic genomes
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项目类别:
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依托单位:
海外基金