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Investigating Transcriptional Responses to the Environment

Investigating Transcriptional Responses to the Environment
研究对环境的转录反应
批准号:
8929789
负责人:
Karen L Adelman
金额:
$250.27万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至

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中文摘要
翻译
我们的实验室发现,暂停的POL II从启动子-近端区域的释放对于大量基因的表达是限速的。我们最初的工作采用了全球定位分析(使用称为芯片和芯片序列的技术)和体内足迹分析相结合的方法,调查了暂停的POLII在果蝇中的流行情况。令人惊讶的是,这些数据显示Pol II停顿比之前认识到的要广泛得多,发生在全基因组的数千个启动子中。我们和其他人最近将这些发现扩展到哺乳动物系统(小鼠和人类),表明暂停在高等生物体中流行的基因调控策略。此外,我们的结果显示,在环境或发育反应基因网络中,POL II存在于许多基因中,这表明POL II的存在有助于对动态变化的环境做出有效的、综合的反应。 了解暂停的POL II的基本性质,以及控制启动子-近端POL II的维持和释放进入生产性延伸的因素是阿德尔曼实验室研究的具体目标。除了提供对应激反应的重要洞察外,这项工作还有望阐明癌症和艾滋病发展过程中的基因表达,因为在c-myc、c-fos和JunB等原癌基因的哺乳动物启动子以及HIV启动子中也观察到了类似的停滞的POL II。作为更好地确定暂停的机制的努力的一部分,我们最近开发了一种新的技术,用于分离由暂停的Pol II产生的短RNA转录本,并通过对单个RNA分子的大规模平行测序来分析它们。这一策略使我们能够在单核苷酸分辨率下准确地定位转录启动和暂停的位置。值得注意的是,这项令人兴奋的新技术揭示了最初转录区域内的DNA序列在指定早期伸长效率方面的作用,为为什么聚合酶暂停在某些基因上比在其他基因上更突出提供了见解。 在探索控制POL II失速的分子机制时,负伸长因子或NELF复合体是实验室特别感兴趣的。到目前为止,NELF已经被证明在几个基因上建立了暂停的POL II,包括JunB和HIV启动子。为了在全球范围内识别NELF的靶点,我们使用RNA干扰对NELF缺失的果蝇细胞进行了微阵列分析。我们发现许多NELF靶基因都参与了刺激反应途径,尤其是在先天免疫反应中。为了评估这一发现的生理学相关性,我们最近在果蝇脂肪体(主要的免疫反应组织)中进行了NELF耗尽,随后对RNA水平进行了微阵列分析,以确定NELF的靶基因。这项工作证实了NELF在体内调节先天性免疫系统各组成部分的表达方面发挥着关键作用。在细胞和果蝇中的后续研究表明,NELF介导的Pol II暂停对于细菌攻击的最佳免疫反应是必不可少的,并表明聚合酶暂停调节关键免疫调节因子的基本表达水平,如核因子-kB转录因子RAISH(REL)。 除了我们在果蝇上的工作外,我们还在研究聚合酶暂停在哺乳动物炎症反应中的作用(使用来自小鼠的原始巨噬细胞),以及在哺乳动物发育过程中的作用(使用多能细胞)。值得注意的是,在这两个系统中,我们发现暂停的中断极大地影响了细胞对环境或外部线索的反应。对这一效应的剖析表明,停顿在决定信号转导机制的关键枢纽的表达水平方面起着关键作用。通过这种方式,暂停可以调整信号反应,以及信号对基因表达的影响。综上所述,这些数据表明,暂停POL II可以协调调整基础基因的表达和激活,从而能够对环境或发育线索做出准确、平衡的反应。
英文摘要
Our laboratory has found that release of paused Pol II from the promoter-proximal region is rate-limiting for expression of a large number of genes. Our initial work investigated the prevalence of paused Pol II in Drosophila, employing a combination of global location analysis (using techniques called ChIP-chip and ChIP-seq) as well as in vivo footprinting assays. Surprisingly, these data showed that Pol II pausing is much more widespread than previously appreciated, occurring at thousands of promoters genome-wide. We and others have recently extended these findings to mammalian systems (mouse and human), demonstrating that pausing a prevalent gene regulatory strategy in higher organisms. Moreover, our results reveal that Pol II is constitutively present at many genes in environmentally- or developmentally-responsive gene networks, suggesting that the presence of Pol II facilitates efficient, integrated responses to a dynamically changing environment. Understanding the fundamental properties of paused Pol II, and the factors that govern maintenance vs. release of promoter-proximal Pol II into productive elongation are specific aims of research in the Adelman laboratory. In addition to providing crucial insight into stress-responses, this work is anticipated to elucidate gene expression during the development of cancer and AIDS, since similarly paused Pol II are observed at the mammalian promoters of proto-oncogenes like c-myc, c-fos and junB, as well as at the HIV promoter. As part of our efforts to better define the mechanisms underlying pausing, we have recently developed a novel technique for isolating the short RNA transcripts generated by paused Pol II, and analyzed them through massively-parallel sequencing of individual RNA molecules. This strategy allowed us to pinpoint both the locations of transcription initiation and pausing, at single-nucleotide resolution. Notably, this exciting new technique revealed a role for the DNA sequence within the initially transcribed region in specifying the efficiency of early elongation, providing insights into why polymerase pausing is more prominent at some genes than at others. In probing the molecular mechanisms governing Pol II stalling, the Negative ELongation Factor, or NELF complex, is of particular interest to the laboratory. NELF has been shown to establish paused Pol II at several genes to date, including the junB and HIV promoters. To globally identify targets of NELF, we have performed a microarray analysis on Drosophila cells that were depleted of NELF using RNA interference. We found that many NELF target genes are involved in stimulus-responsive pathways, with a particular enrichment in the innate immune response. To evaluate the physiological relevance of this finding, we have recently performed NELF depletion in the Drosophila fat body (the main immune responsive tissue), followed by microarray analysis of RNA levels to identify NELF target genes. This work confirms that NELF plays a key role in vivo in regulating expression of components of the innate immune system. Follow-up studies in both cells and flies revealed that NELF-mediated Pol II pausing is essential for an optimal immune response to bacterial challenge and indicated that polymerase pausing tunes the basal expression level of critical immune regulators such as the NF-kB transcription factor Relish (Rel). In addition to our work in Drosophila, we are studying the role of polymerase pausing in the mammalian inflammatory response (using primary macrophages derived from mouse), and during mammalian development (using pluripotent cells). Notably, in both systems we find that disruption of pausing dramatically impacts cellular responsiveness to environmental or extrinsic cues. Dissection of this effect has revealed that pausing plays a key role in determining the expression level of critical hubs of signal transduction machineries. In this way, pausing tunes signaling responses, and the consequences of signaling on gene expression. Taken together, the data suggest that pausing of Pol II allows for coordinated tuning of both basal gene expression and activation, to enable precise, balanced responses to environmental or developmental cues.
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Identifying the sequences and factors that govern the fate of elongating RNAPII
  • 批准号:
    10534168
  • 项目类别:
  • 资助金额:
    $41.8万
  • 财政年份:
    2021
  • 负责人:
    Karen L Adelman
  • 依托单位:
Identifying the sequences and factors that govern the fate of elongating RNAPII
  • 批准号:
    10092655
  • 项目类别:
  • 资助金额:
    $43.14万
  • 财政年份:
    2021
  • 负责人:
    Karen L Adelman
  • 依托单位:
Identifying the sequences and factors that govern the fate of elongating RNAPII
  • 批准号:
    10320370
  • 项目类别:
  • 资助金额:
    $41.83万
  • 财政年份:
    2021
  • 负责人:
    Karen L Adelman
  • 依托单位:
Probing the specificity and activity of the metazoan Integrator complex
  • 批准号:
    10224260
  • 项目类别:
  • 资助金额:
    $65.07万
  • 财政年份:
    2019
  • 负责人:
    Karen L Adelman
  • 依托单位:
海外基金