TRANSCRIPTION OF CHROMATIN TEMPLATES
染色质模板的转录
基本信息
- 批准号:6526056
- 负责人:
- 金额:$ 29.3万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:1999
- 资助国家:美国
- 起止时间:1999-08-01 至 2004-07-31
- 项目状态:已结题
- 来源:
- 关键词:
项目摘要
In order to unravel gene regulatory pathways in eukaryotic cells, it is necessary to achieve a much greater understanding of the basic RNA synthesis machinery. In particular, it is now appreciated that control of transcript elongation is an important aspect of the regulation of gene expression. The DNA template for transcription in the cell nucleus is packaged into nucleosomes. However, during in vitro transcription experiments nucleosomes are usually very strong barriers to transcript elongation. Our long-term goal is to obtain an in vitro transcription system that more accurately reflects in vivo events. It is therefore necessary to much more fully characterize the molecular mechanisms through which RNA polymerase II transcribes nucleosomal templates. We will be guided by the limited number of examples in which some transcription of nucleosomal DNA has been achieved in vitro. For example, results with mononucleosomal templates have emphasized the potential importance of DNA adjacent to the nucleosome as an acceptor for nucleosomal DNA binding surfaces left unoccupied as RNA polymerase acquires the template DNA. We will therefore prepare polynucleosomal templates consisting of arrays of nucleosomes in defined locations. This will allow us to systematically explore the importance of polymerase-nucleosome and nucleosome-nucleosome spacers in the efficiency of transcript elongation. There is considerable evidence that modification of the N-terminal domains of histones is important in the control of gene expression. We will build on this finding, and on our own preliminary results, to explore the effect of modifications in the histone N-terminal domains on the ability of RNA polymerase to transcribe nucleosomal templates. Finally, recent work has identified a novel transcription factor, FACT, which specifically facilitates transcript elongation through nucleosomes. We will investigate the mechanism by which FACT functions, and we will also search for effects of other elongation factors on the transcription of nucleosomal templates.
为了揭示真核细胞中的基因调控途径,有必要对基本的RNA合成机制有更深入的了解。特别是,现在认识到转录延伸的控制是基因表达调控的一个重要方面。细胞核中用于转录的DNA模板被包装成核小体。然而,在体外转录实验中,核小体通常是转录延伸的非常强的障碍。我们的长期目标是获得一种更准确地反映体内事件的体外转录系统。因此,有必要更充分地表征RNA聚合酶II转录核小体模板的分子机制。我们将以有限数量的例子为指导,在这些例子中,核体DNA的一些转录已经在体外实现。例如,单核小体模板的结果强调了核小体附近的DNA作为核小体DNA结合表面受体的潜在重要性,当RNA聚合酶获得模板DNA时,核小体DNA结合表面未被占用。因此,我们将在确定的位置制备由核小体阵列组成的多核小体模板。这将使我们能够系统地探索聚合酶-核小体和核小体-核小体间隔物在转录物延伸效率中的重要性。有大量证据表明,组蛋白n端结构域的修饰在基因表达的控制中是重要的。我们将以这一发现和我们自己的初步结果为基础,探索组蛋白n端结构域修饰对RNA聚合酶转录核小体模板能力的影响。最后,最近的研究发现了一种新的转录因子FACT,它通过核小体特异性地促进转录延伸。我们将研究FACT的作用机制,我们也将研究其他伸长因子对核小体模板转录的影响。
项目成果
期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
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Donal Luse其他文献
Donal Luse的其他文献
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{{ truncateString('Donal Luse', 18)}}的其他基金
The effect of nucleosomes on the earliest stages of RNA polymerase II transcription
核小体对 RNA 聚合酶 II 转录最早阶段的影响
- 批准号:
9766312 - 财政年份:2018
- 资助金额:
$ 29.3万 - 项目类别:














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