Johnson C M, Schleif R F
Department of Biology, Johns Hopkins University, Baltimore, Maryland 21218, USA.
J Bacteriol. 1995 Jun;177(12):3438-42. doi: 10.1128/jb.177.12.3438-3442.1995.
In Escherichia coli, the AraC protein represses transcription from its own promoter, PC, and when associated with arabinose, activates transcription from three other promoters, PBAD, PE, and PFGH. Expression from all four of these promoters is also regulated by cyclic AMP-catabolite activator protein; however, the arrangement of the protein binding sites is not identical for each promoter. We are interested in determining how the AraC protein is able to activate PBAD, PE, and PFGH despite their differences. We have characterized the induction response of the wild-type arabinose operons from their native chromosomal locations by primer extension analysis. In this analysis, mRNA from the four arabinose operons plus an internal standard could all be assayed in the RNA obtained from a single sample of cells. We found that each of the operons shows a rapid, within 15 to 30 s, response to arabinose. We also found that the expression of araFGH is more sensitive to catabolite repression but not to arabinose concentration than are araE and araBAD. Finally, we have determined the relative levels of inducibility in wild-type cells of araBAD, araFGH, and araE to be 6.5, 5, and 1, respectively. These results provide a basis for subsequent studies to determine the mechanism(s) by which AraC protein activates transcription from the different arabinose promoters.
在大肠杆菌中,AraC蛋白抑制其自身启动子PC的转录,而当与阿拉伯糖结合时,它会激活其他三个启动子PBAD、PE和PFGH的转录。这四个启动子的表达也受环磷酸腺苷 - 分解代谢物激活蛋白的调控;然而,每个启动子的蛋白质结合位点排列并不相同。我们感兴趣的是确定尽管PBAD、PE和PFGH存在差异,AraC蛋白是如何激活它们的。我们通过引物延伸分析从其天然染色体位置对野生型阿拉伯糖操纵子的诱导反应进行了表征。在该分析中,来自四个阿拉伯糖操纵子的mRNA加上一个内标,都可以在从单个细胞样品获得的RNA中进行检测。我们发现每个操纵子对阿拉伯糖都有快速反应,即在15到30秒内。我们还发现,与araE和araBAD相比,araFGH的表达对分解代谢物阻遏更敏感,但对阿拉伯糖浓度不敏感。最后,我们确定在野生型细胞中araBAD、araFGH和araE的相对诱导水平分别为6.5、5和1。这些结果为后续研究确定AraC蛋白激活不同阿拉伯糖启动子转录的机制提供了基础。