Impact of enhancer sequence and interacting factors on estrogen receptor-mediated
Impact of enhancer sequence and interacting factors on estrogen receptor-mediated
批准号:
8513388
负责人:
Jason Gertz
金额:
$9.51万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-07-18 至 2013-10-31
关键词:
AddressAdverse effectsAffectAwardBase SequenceBehaviorBindingBinding SitesBiological AssayBreast Cancer CellBreast Cancer TreatmentCancer cell lineCell LineCellsChIP-seqChromatinCollaborationsCommunicationCommunitiesDNA SequenceDataDeoxyribonuclease IDeoxyribonucleasesDiseaseDissectionDistalEndometrialEndometrial CarcinomaEngineeringEnhancersEnvironmental EstrogenEstrogen ReceptorsEstrogensEventExhibitsFacultyFibrinogenGene ExpressionGene Expression RegulationGene TargetingGenesGeneticGenomeGenomicsGoalsHealthHumanHuman Cell LineHuman bodyHypersensitivityIndividualInstructionKnock-outKnowledgeLearningLightLocationMapsMeasurementMediatingMentorsMentorshipMethodsModelingMolecularMutationNuclear ReceptorsOsteoporosisOutcomePathway interactionsPhasePhysiologicalPhysiologyPlayPositron-Emission TomographyPostdoctoral FellowPropertyReadingReceptor CellRegulationRegulator GenesReporter GenesResearchResearch PersonnelResearch ProposalsRoleSignal TransductionSpecificityStudy modelsSystemTechniquesTestingTissue EngineeringTissuesTrainingWorkWritingbasecareercell typedriving forceexperiencefunctional genomicsgene discoverygenome sequencinggenome-widegraduate studentinsightmalignant breast neoplasmmeetingsmemberreceptor bindingresponseskillssymposiumtranscription factortranscriptome sequencing
中文摘要
描述(申请人提供):我的长期研究目标是阅读我们基因组序列中所写的基因调控指令。我希望能够预测基因表达水平在一个给定的细胞类型仅从基因组序列,并了解基因调控指令是如何在不同的细胞类型的差异解释。破译基因组序列和基因表达之间关系的能力将对人类健康产生广泛而深远的影响。例如,通过工程调控序列可以实现对基因表达的非常精确的控制,基因调控突变可以在疾病中被识别和容易地解释,然后可能被修复。在实现这一崇高目标之前,必须从重要生物医学系统的定向研究中获得见解。为了剖析基因调控的细胞类型特异性差异以及基因组序列如何介导这些变化,本研究将重点研究雌激素对基因调控的影响。雌激素信号为研究不同细胞类型特异性的基因表达反应提供了一个很好的模型。雌激素在许多组织中产生不同的作用;然而,生理结果背后的分子基础仍然知之甚少。在之前的工作中,我发现了两种人类细胞系,它们对雌激素治疗表现出非常不同的反应,包括受影响基因的表达和雌激素受体结合位置的差异。通过使用多种功能基因组学分析,我希望阐明这些细胞类型特异性反应的机制和DNA序列。我将从两个角度探讨细胞类型特异性雌激素信号:1)确定与雌激素受体相互作用的因子,以细胞类型特异性的方式驱动雌激素信号;2)剖析细胞类型特异性雌激素受体结合增强子的DNA序列约束。为了研究相互作用因子,我将通过分析DNA酶超敏性和DNA序列基序来创建候选因子列表。然后,我将用ChIP-seq测试这些候选细胞是否共存,并通过制造敲除和稳定的过表达细胞系来确定必要性和充分性。为了剖析细胞类型特异性雌激素反应增强子的序列约束,我将首先使用china - pet(一种在基因组尺度上分析远程染色质相互作用的方法)找到活性雌激素受体结合增强子及其靶向基因。然后,我将开发一种技术来研究细胞类型特异性增强子序列的行为,这种技术利用了高通量测序的优势。这些方法的结合应该提供一个强有力的图像,决定细胞类型特异性的事件和基因组序列如何编码细胞类型依赖的基因调控。这个研究计划的短期目标使我走上了实现我的长期职业目标的道路,成为一名终身教职员工,研究与基因组序列相关的基因调控。在过渡性奖项期间,我将学习新的功能基因组学技术和分析方法,包括DNase hypersensitivity mapping和china - pet。我还将通过参加大型会议和个人会议,成为核受体社区的积极成员。除了在这个奖项中接受科学的训练外,我还计划学习成为一名成功的导师所需的管理和沟通技巧。我将获得管理技术人员的经验,为研究生的指导做出贡献,并参与与其他实验室的合作。这些技能,加上科学训练,应该能让我从
英文摘要
DESCRIPTION (provided by applicant): My long-term research goal is to read the gene regulation instructions written in our genome sequence. I would like to be able to predict gene expression levels in a given cell type from genome sequence alone and understand how the gene regulation instructions are differentially interpreted in diverse cell types. The ability to decipher the relationship between genome sequence and gene expression would have a wide reaching impact on human health. For example, very precise control of gene expression could be achieved through engineered regulatory sequences and gene regulatory mutations could be identified and easily interpreted in disease and then potentially fixed. Before achieving this loft goal, insights from directed studies in important biomedical systems must be gained. To dissect cell type-specific differences in gene regulation and how genome sequence mediates these changes, the proposed research focuses on gene regulation in response to estrogens. Estrogen signaling provides a good model for studying gene expression responses that are specific to different cell types. Estrogens produce diverse effects in a number of tissues; however, the molecular basis underlying physiological outcomes remains poorly understood. In previous work, I identified two human cell lines that exhibit very dissimilar responses to estrogen treatment, including disparity in the genes whose expression is affected and the locations of estrogen receptor binding. Through the use of multiple functional genomics assays, I hope to shed light on the mechanisms and therefore DNA sequences that underlie these cell type- specific responses. I will approach cell type-specific estrogen signaling from two angles: 1) Identify factors that interact with estrogen receptor to drive estrogen signaling in a cell type-specific manner; 2) Dissect DNA sequence constraints on cell type-specific estrogen receptor-bound enhancers. To study interacting factors I will create a list of candidate factors through analysis of DNase hypersensitivity and DNA sequence motifs. I will then test these candidates for co-occurrence with ChIP-seq and determine necessity and sufficiency by making knock out and stable over-expression cell lines. In order to dissect sequence constraints on cell type-specific estrogen responsive enhancers, I will first find active estrogen receptor bound enhancers and the genes they target using ChIA-PET, a method that analyses long-range chromatin interactions on a genome scale. I will then develop a technique to study the behavior of cell type-specific enhancer sequences in isolation that takes advantage of high-throughput sequencing. The combination of these approaches should give a robust picture of the events that dictate cell type-specificity and how genome sequence encodes cell type dependent gene regulation. The short term goals of this research proposal set me on a path towards achieving my long-term career goals of becoming a tenure-track faculty member studying gene regulation in relation to genome sequence. During the transitional award I will learn new functional genomics techniques and analysis methods, including DNase hypersensitivity mapping and ChIA-PET. I will also become an active member of the nuclear receptor community through the attendance of large conferences and individual meetings. In addition to the scientific training that I will receive during this award, I plan to learn the managerial and communication skills necessary to becoming a successful mentor. I will gain experience managing a technician, contributing to the mentorship of a graduate student and participating in collaborations with other labs. These skills, along with scientific training, should prepare me for the transition from
postdoctoral fellow to independent investigator.
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
DOI:
10.1016/j.molcel.2013.08.037
发表时间:
2013-10-10
期刊:
MOLECULAR CELL
影响因子:
16
作者:
[Gertz, Jason, Savic, Daniel, Varley, Katherine E., Partridge, E. Christopher, Safi, Alexias, Jain, Preti, Cooper, Gregory M., Reddy, Timothy E., Crawford, Gregory E., Myers, Richard M.]
通讯作者:
Myers, Richard M.
Mechanisms of tamoxifen-associated endometrial cancer risk
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批准号:10650054
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项目类别:
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资助金额:$21.59万
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财政年份:2023
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依托单位:
In vivo multiplexed silencing of cis-elements in the brain
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依托单位:
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资助金额:$65.46万
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依托单位:
In situ evaluation of combinatorial gene regulation in the human genome
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批准号:9311326
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资助金额:$59.35万
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财政年份:2015
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Impact of enhancer sequence and interacting factors on estrogen receptor-mediated
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批准号:9090934
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资助金额:$1.75万
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财政年份:2015
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依托单位:
Development of Enhancer RNA-based Biomarkers in FFPE Tissue
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资助金额:$19.44万
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财政年份:2015
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Impact of enhancer sequence and interacting factors on estrogen receptor-mediated
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批准号:8776959
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项目类别:
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资助金额:$24.87万
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财政年份:2012
-
负责人:Jason Gertz
-
依托单位:
Impact of enhancer sequence and interacting factors on estrogen receptor-mediated
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批准号:8353587
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项目类别:
-
资助金额:$9.51万
-
财政年份:2012
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负责人:Jason Gertz
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依托单位:
Nuclear Control of Cell Growth and Differentiation (NC)
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批准号:10152543
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项目类别:
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资助金额:$6.2万
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财政年份:1997
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负责人:Jason Gertz
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依托单位:
海外基金