RNA POLYMERASE II AND THE TRANSCRIPTION COMPLEX
RNA POLYMERASE II AND THE TRANSCRIPTION COMPLEX
批准号:
6149304
负责人:
Richard Ray Burgess
金额:
$5.03万
依托单位国家:
美国
项目类别:
财政年份:
1994
资助国家:
美国
项目状态:
已结题
起止时间:
1994-05-01 至 2000-02-29
关键词:
DNA DNA directed RNA polymerase HeLa cells SDS polyacrylamide gel electrophoresis X ray crystallography affinity labeling animal tissue chemical binding crosslink enzyme complex enzyme mechanism enzyme reconstitution enzyme structure gel mobility shift assay genetic promoter element genetic transcription immunoaffinity chromatography laboratory mouse laboratory rabbit monoclonal antibody photochemistry protein purification recombinant proteins transcription factor western blottings
中文摘要
在转录水平上调节基因表达是
调节细胞生长和分化的主要手段。异常
转录调控在肿瘤中发挥重要作用
转型。尽管在这方面有大量的研究活动
转录调控机制,我们才刚刚开始了解
多个转录因子及其如何促进的图片,
激活并抑制特定的转录。目前很少有
了解RNA聚合酶中亚基相互作用的细节
II这些亚单位如何与细胞相互作用并受其调节
大量的转录因子。我们将集中精力在结构上,
转录机制的功能和调节,重点是
关于RNA聚合酶II。我们将研究RNA聚合酶II亚单位
组织:通过蛋白质-蛋白质鉴定稳定的亚组分
并通过合作确定其3-D结构
酵母酶。我们将确定RNA聚合酶II的哪些亚基是
参与与一般转录因子的相互作用
溶液和再引发复合体中的因子-聚合酶复合体
在最小启动子系统上形成(涉及人免疫球蛋白启动子,
RNA聚合酶II与最基本的通用转录因子
TBP、TFIIB和RAP30)。我们将推广我们最近的研究成果
RNA最大亚基的C-末端结构域的重要性
聚合酶II,并确定与该结构域相互作用的因子。
虽然我们最终对人类转录调控感兴趣,
由于这一优势,我们还将广泛使用酵母
遗传学及其替代人类聚合酶的丰度和能力
在提取物和纯化系统中的体外转录过程中。这
我们的工作将建立在我们的优势、经验和之前关于
RNA聚合酶的鉴定、纯化和性质研究
转录因子。我们将严重依赖蛋白质-蛋白质和
蛋白质-DNA交联;关于使用单克隆抗体来检测,
抑制和免疫纯化部分转录装置;以及
从凝胶中洗脱的蛋白质高效复性的改进方法,
印迹到膜上,或从溶解的包涵体中。
我们相信,对RNA聚合酶II的基本、彻底的研究
转录因子和DNA Will的结构和关键相互作用
提供了对特定转录机制的重大新见解
以及转录是如何被控制的。这是一个长期目标
研究是利用我们对特定聚合酶的详细知识-
转录因子相互作用以设计干扰WITS的试剂
异常的调节相互作用对维持肿瘤至关重要
州政府。
英文摘要
Regulation of gene expression at the level of transcription is one of the
major means of regulating cell growth and differentiation. Abnormal
transcriptional regulation plays an important role in neoplastic
transformation. Despite a great amount of research activity on the
mechanisms of transcriptional regulation, we are only beginning to get
a picture of the multiple transcription factors and how they promote,
activate, and repress specific transcription. Very little is presently
known about the details of the subunit interactions within RNA polymerase
II itself of how these subunits interact with and are modulated by the
numerous transcription factors. We will concentrate on the structure,
function and regulation of the transcription machinery, with an emphasis
on RNA polymerase II. We will study the RNA polymerase II subunit
organization: by identifying stable subassemblies, by protein-protein
crosslinking, and by collaborating on the 3-D structure determination of
the yeast enzyme. We will determine which RNA polymerase II subunits are
involved in interactions with the general transcription factors both in
factor-polymerase complexes in solution and in reinitiation complexes
formed on a minimal promoter system (involving the human IgH promoter,
RNA polymerase II and the most essential general transcription factors
TBP, TFIIB, and RAP30). We will extend our recent results on the
importance of the C-terminal domain of the largest subunit of RNA
polymerase II and determine the factors that interact with this domain.
While we are ultimately interested in human transcriptional regulation,
we will also work extensively with yeast because of this superior
genetics and its abundance and ability to substitute for human polymerase
during transcription in vitro in extracts and purified systems. This
work will build on our strengths, experience, and previous work on the
identification, purification, and characterization of RNA polymerases and
transcription factors. We will rely heavily on protein-protein and
protein-DNA crosslinking; on the use of monoclonal antibodies to detect,
inhibit, and immunopurify parts of the transcription apparatus; and on
improved methods for efficient renaturation of proteins eluted from gels,
blotted onto membranes, or from solubilized inclusion bodies.
We are convinced that a basic, thorough study of RNA polymerase II
structure and key interactions with transcription factors and DNA will
provide major new insights into the mechanism of specific transcription
and how that transcription is controlled. A long-term goal of this
research is to use our detailed knowledge of specific polymerase-
transcription factor interactions to design agents that interfere wit
abnormal regulatory interactions crucial to maintaining the neoplastic
state.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
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财政年份:2004
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STRUCT OF INTERACTION DOMAIN OF E COLI RNA POLYMERASE CORE & SIGMA70 SUBUNITS
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财政年份:1999
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RNA POLYMERASE II AND THE TRANSCRIPTION COMPLEX
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批准号:6042561
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资助金额:$21.6万
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财政年份:1994
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RNA POLYMERASE II AND THE TRANSCRIPTION COMPLEX
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批准号:6788097
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资助金额:$26.5万
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RNA POLYMERASE II AND THE TRANSCRIPTION COMPLEX
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批准号:2101668
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RNA POLYMERASE II AND THE TRANSCRIPTION COMPLEX
-
批准号:2376891
-
项目类别:
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资助金额:$26.42万
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RNA POLYMERASE II AND THE TRANSCRIPTION COMPLEX
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批准号:2667955
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资助金额:$27.47万
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RNA POLYMERASE II AND THE TRANSCRIPTION COMPLEX
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批准号:2101667
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资助金额:$23.51万
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财政年份:1994
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负责人:Richard Ray Burgess
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依托单位:
RNA POLYMERASE II AND THE TRANSCRIPTION COMPLEX
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批准号:2101669
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项目类别:
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资助金额:$25.42万
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财政年份:1994
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负责人:Richard Ray Burgess
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依托单位:
RNA POLYMERASE II AND THE TRANSCRIPTION COMPLEX
-
批准号:6083293
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项目类别:
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资助金额:$5.03万
-
财政年份:1994
-
负责人:Richard Ray Burgess
-
依托单位:
RNA POLYMERASE II AND THE TRANSCRIPTION COMPLEX
-
批准号:6376020
-
项目类别:
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资助金额:$22.25万
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财政年份:1994
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RNA POLYMERASE II AND THE TRANSCRIPTION COMPLEX
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批准号:6619636
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资助金额:$25.73万
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依托单位:
RNA POLYMERASE II AND THE TRANSCRIPTION COMPLEX
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批准号:6534602
-
项目类别:
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资助金额:$24.98万
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财政年份:1994
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负责人:Richard Ray Burgess
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依托单位:
AUTOMATED DNA SEQUENCER
-
批准号:3519749
-
项目类别:
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资助金额:$8.9万
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财政年份:1987
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负责人:Richard Ray Burgess
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依托单位:
PROTEIN SEQUENCING FACILITY EXPANSION
-
批准号:3519542
-
项目类别:
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资助金额:$8.5万
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财政年份:1986
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负责人:Richard Ray Burgess
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依托单位:
RNA POLYMERASE SIGMA SUBUNIT--STRUCTURE AND FUNCTION
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依托单位:
RNA POLYMERASE SIGMA SUBUNIT--STRUCTURE AND FUNCTION
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资助金额:$30.56万
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财政年份:1980
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RNA POLYMERASE SIGMA SUBUNIT: STRUCTURE AND FUNCTION
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批准号:3275841
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RNA POLYMERASE SIGMA SUBUNIT--STRUCTURE AND FUNCTION
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资助金额:$30.56万
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依托单位:
海外基金