首页> 外文期刊>Molecular Microbiology >Role of HU and DNA supercoiling in transcription repression: specialized nucleoprotein repression complex at gal promoters in Escherichia coli.
【24h】

Role of HU and DNA supercoiling in transcription repression: specialized nucleoprotein repression complex at gal promoters in Escherichia coli.

机译:HU和DNA超螺旋在转录抑制中的作用:大肠杆菌gal启动子处的专门的核蛋白抑制复合物。

获取原文
获取原文并翻译 | 示例
           

摘要

Efficient repression of the two promoters P1 and P2 of the gal operon requires the formation of a DNA loop encompassing the promoters. In vitro, DNA looping-mediated repression involves binding of the Gal repressor (GalR) to two gal operators (OE and OI) and binding of the histone-like protein HU to a specific locus (hbs) about the midpoint between OE and OI, and supercoiled DNA. Without DNA looping, GalR binding to OE partially represses P1 and stimulates P2. We investigated the requirement for DNA supercoiling and HU in repression of the gal promoters in vivo in strains containing a fusion of a reporter gene, gusA or lacZ, to each promoter individually. While the P1 promoter was found to be repressible in the absence of DNA supercoiling and HU, the repression of P2 was entirely dependent upon DNA supercoiling in vivo. The P2 promoter was fully derepressed when supercoiling was inhibited by the addition of coumermycin in cells. P2, but not P1, was also totally derepressed by the absence of HU or the OI operator. From these results, we propose that the repression of the gal promoters in vivo is mediated by the formation of a higher order DNA-multiprotein complex containing GalR, HU and supercoiled DNA. In the absence of this complex, P1 but not P2 is still repressed by GalR binding to OE. The specific nucleoprotein complexes involving histone-like proteins, which repress promoter activity while remaining sensitive to inducing signals, as discussed, may occur more generally in bacterial nucleoids.
机译:gal操纵子的两个启动子P1和P2的有效抑制需要形成一个包含启动子的DNA环。在体外,DNA回路介导的阻抑作用涉及Gal阻遏物(GalR)与两个gal操纵子(OE和OI)的结合以及组蛋白样蛋白HU与OE和OI之间中点附近的特定基因座(hbs)的结合,和超螺旋DNA。没有DNA环,GalR与OE结合会部分抑制P1并刺激P2。我们调查了在含有报道基因gusA或lacZ分别与每个启动子融合的菌株中体内抑制gal启动子时DNA超螺旋和HU的需求。虽然在没有DNA超螺旋和HU的情况下发现P1启动子是可抑制的,但在体内对P2的抑制完全取决于DNA超螺旋。当通过在细胞中添加香豆霉素抑制超螺旋时,P2启动子被完全抑制。由于缺少HU或OI运算符,P2(而非P1)也被完全抑制。从这些结果,我们建议体内的gal启动子的阻遏是由含有GalR,HU和超螺旋DNA的高阶DNA-多蛋白复合物的形成介导的。在没有这种复合物的情况下,GalR与OE的结合仍会抑制P1但不会抑制P2。如所讨论的,涉及组蛋白样蛋白的特异性核蛋白复合物可抑制启动子活性,同时保持对诱导信号的敏感性,如所讨论的,可能更普遍地存在于细菌类核苷中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号