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Target(s) of transcriptional regulators ppGpp and DksA.

机译:转录调节因子ppGpp和DksA的靶标。

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摘要

Bacterial RNA polymerase is a highly regulated enzyme, altering the metabolic and functional state of bacteria in response to their environment. rRNA synthesis is a major metabolic expense and is, thus, highly regulated. One such response is the ppGpp-induced stringent response which changes the metabolic state of the cell, particularly inhibiting rRNA synthesis. ppGpp, guanosine tetraphosphate, is produced rapidly during amino acid starvation. ppGpp acts along with an accessory molecule, a protein DksA. The mechanism and binding site of ppGpp/DksA remains unclear and disputed. The objective of this study is to determine the binding site of ppGpp and DksA and understand the mechanism by which they regulate the cell's metabolic state. The strategy is to randomly mutagenize RNAP genes, specifically rpoC which codes for beta subunit, and perform genetic screens to identify mutants resistant to toxic effects of ppGpp/DksA. The mutants were isolated, sequenced, tested and characterized by in vivo and in vitro assays. The mutants isolated in this study belong to two distinct clusters: the switch region, which controls the opening and closing of active center clamp allowing dsDNA entry, and the secondary channel, which is the channel through which NTP substrates enter. The mutants in the switch region could imply a conformational determinant for ppGpp/DksA. The secondary channel mutants could be binding/conformational determinants for ppGpp/DksA. The in vitro results indicate that two mutants in the secondary channel interact with DksA which could confirm DksA's putative binding site.
机译:细菌RNA聚合酶是一种高度调节的酶,可根据环境改变细菌的代谢和功能状态。 rRNA合成是主要的代谢费用,因此受到高度调节。一种这样的应答是ppGpp诱导的严格应答,其改变细胞的代谢状态,特别是抑制rRNA合成。 ppGpp,鸟嘌呤四磷酸,在氨基酸饥饿期间快速产生。 ppGpp与辅助分子蛋白质DksA共同起作用。 ppGpp / DksA的机制和结合位点仍不清楚和有争议。这项研究的目的是确定ppGpp和DksA的结合位点,并了解它们调节细胞代谢状态的机制。该策略是随机诱变RNAP基因,特别是编码β亚基的rpoC,并进行基因筛选以鉴定对ppGpp / DksA毒性作用具有抗性的突变体。通过体内和体外测定分离,测序,测试和表征突变体。在这项研究中分离的突变体属于两个不同的簇:开关区域,其控制允许dsDNA进入的活性中心钳的打开和关闭;以及次级通道,其是NTP底物通过其进入的通道。开关区域中的突变体可能暗示着ppGpp / DksA的构象决定簇。次要通道突变体可能是ppGpp / DksA的结合/构象决定簇。体外结果表明,二级通道中的两个突变体与DksA相互作用,这可以证实DksA的推定结合位点。

著录项

  • 作者

    Gupta, Nimish.;

  • 作者单位

    Rutgers The State University of New Jersey - New Brunswick.;

  • 授予单位 Rutgers The State University of New Jersey - New Brunswick.;
  • 学科 Biology Molecular.;Biology Microbiology.;Engineering Chemical.
  • 学位 M.S.
  • 年度 2009
  • 页码 67 p.
  • 总页数 67
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;化工过程(物理过程及物理化学过程);微生物学;
  • 关键词

  • 入库时间 2022-08-17 11:37:59

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