GENETIC ANALYSIS OF THE CHICKEN BETA-GLOBIN LOCUS
GENETIC ANALYSIS OF THE CHICKEN BETA-GLOBIN LOCUS
批准号:
6363063
负责人:
ELLIOT M EPNER
金额:
$20.58万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-03-01 至 2005-02-28
关键词:
DNA replication DNA replication origin chromatin erythroid stem cell gene deletion mutation gene targeting genetic enhancer element genetic mapping genetic regulation genetic regulatory element genetic transcription globin laboratory mouse nucleic acid structure nucleoproteins protein structure function tissue /cell culture transposon /insertion element
中文摘要
本研究的目的是利用同源重组(HR)策略来阐明鸡β -珠蛋白位点是如何在染色质结构、复制时间和起源使用以及转录水平上受到调控的。我们最近的研究表明,小鼠和人类β -珠蛋白基因座控制区(lcr)的缺失不会使基因座沉默,也不会在小鼠或人类中产生相当于西班牙地中海贫血的表型。在本提案中,我们将在鸡β -珠蛋白位点进行类似的实验,其中位点结构域结构和5'边界元件(绝缘体)的存在已经得到了很好的表征。当足够的顺式调控元件被删除以创建沉默的鸡位点时,我们将使用addback或敲入方法来确定在转录,染色质结构和DNA复制水平上激活该位点所涉及的最小序列。这些实验将为先前定义的调控元件(如增强子、lcr和绝缘子)的功能提供重要的概念,并确定鸡β -珠蛋白基因座中的其他序列,这些序列在多个水平上对基因座的控制很重要。将这些序列包含在基因治疗载体中可以克服当前病毒基因治疗策略的一些局限性,例如低表达水平和随着时间的推移而失去表达,从而有助于未来对血红蛋白病和地中海贫血的基因治疗。本建议的具体目的是:1。基因间调控序列在鸡β -珠蛋白位点(β /epsilon增强子/LCR)中的作用将通过HR介导的DT40缺失和随后的红细胞检测来研究。2. 我们将研究鸡β -珠蛋白位点上游超敏位点(HSS) (5'HS1-4)的作用,包括绝缘子边界区(5'HS4)。这些HSS将在重组熟练的鸡B细胞(DT40)和红系细胞中单独或联合删除,并确定它们在基因座染色质结构和转录的起始和维持中的作用。3. 我们将在DT40细胞中使用HR介导的缺失来确定鸡β -珠蛋白位点中参与DNA复制起始的基本序列,以及上游或其他调控序列在DNA复制起始和定时中的潜在作用。4. 一旦我们在目标1-4中构建了因染色质结构、转录和复制而沉默的鸡基因座,我们将使用addback或knockin方法来重新激活该基因座,并定义可能具有活性的最小、一致和不相关的序列。我们还将使用addback或knockin方法来确定鸡的调控元件激活小鼠和人类沉默的β -珠蛋白位点的能力。
英文摘要
The goal of this proposal is to use homologous recombination (HR) strategies to elucidate how the chicken beta-globin locus is regulated at the level of chromatin structure, replication timing and origin use, and transcription. Our recent work suggests that the deletion of the mouse and human beta-globin locus control regions (LCRs) does not silence the locus and create the equivalent of a Hispanic thalassemia phenotype in mouse or human. In this proposal, we will perform similar experiments in the chicken beta-globin locus, where locus domain structure, and the presence of a 5' boundary element (insulator) have been well characterized. When sufficient cis regulatory elements have been deleted to created a silenced chicken locus, we will use an addback or knock in approach to determine the minimal sequences involved in activating this loci at the level of transcription, chromatin structure, and DNA replication. These experiments will provide important concepts regarding the function of previously define regulatory elements such as enhancers, LCRs, and insulators as well as identify additional sequences in the chicken beta-globin locus that are important for control of the locus at multiple levels. Inclusion of these sequences in gene therapy vectors may overcome some of the limitations of current viral gene therapy strategies such as low expression levels and loss of expression over time, and thereby aid future efforts towards gene therapy of the hemoglobinopathies and thalassemias. The specific aims of this proposal are: 1. The role of intergenic regulatory sequences in the chicken beta globin locus (beta/epsilon enhancer/LCR) will be investigated using HR mediated deletion in DT40 and subsequent assay in erythroid cells. 2. The role of the upstream hypersensitive sites (HSS) (5'HS1-4) in the chicken beta-globin locus will be investigated including the insulator boundary region (5'HS4). These HSS will be deleted singly and in combination in recombination proficient chicken B cells (DT40) and erythroid cells and their role in the initiation and maintenance of locus chromatin structure and transcription determined. 3. We will use HR mediated deletion in DT40 cells to define essential sequences involved in initiation of DNA replication in the chicken beta- globin locus and the potential role of upstream or other regulatory sequences in DNA replication initiation and timing. 4. Once we have constructed chicken loci silenced for chromatin structure, transcription, and replication in aims 1-4, we will use addback or knockin approaches to reactivate the locus and define minimal and consensus, and unrelated sequences that may have activity. We will also use and addback or knockin approach to determine the ability of chicken regulatory elements to activate silenced mouse and human beta-globin loci.
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GENETIC ANALYSIS OF THE CHICKEN BETA-GLOBIN LOCUS
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批准号:6517683
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项目类别:
-
资助金额:$20.96万
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财政年份:2000
-
负责人:ELLIOT M EPNER
-
依托单位:
GENETIC ANALYSIS OF THE CHICKEN BETA-GLOBIN LOCUS
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批准号:6794909
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项目类别:
-
资助金额:$18.16万
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财政年份:2000
-
负责人:ELLIOT M EPNER
-
依托单位:
GENETIC ANALYSIS OF THE CHICKEN BETA-GLOBIN LOCUS
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批准号:6033234
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项目类别:
-
资助金额:$20.58万
-
财政年份:2000
-
负责人:ELLIOT M EPNER
-
依托单位:
GENETIC ANALYSIS OF THE CHICKEN BETA-GLOBIN LOCUS
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批准号:6707009
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项目类别:
-
资助金额:$18.9万
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财政年份:2000
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负责人:ELLIOT M EPNER
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依托单位:
海外基金