Jackson Laura, Blake Timo, Green Jeffrey
Krebs Institute for Biomolecular Research, Department of Molecular Biology and Biotechnology, University of Sheffield, Western Bank, Sheffield S10 2TN, UK.
Microbiology (Reading). 2004 Feb;150(Pt 2):407-413. doi: 10.1099/mic.0.26869-0.
The Escherichia coli ndh gene encodes NADH dehydrogenase II, a primary dehydrogenase used during aerobic and nitrate respiration. The anaerobic transcription factor FNR represses ndh expression by binding at two sites centred at -94.5 and -50.5. In vivo transcription studies using promoter fusions with 5' deletions confirmed that both FNR sites are required for maximum repression under anaerobic conditions. The histone-like protein Fis binds to three sites [centred at -123 (Fis I), -72, (Fis II) and +51 (Fis III)] in the ndh promoter. Using ndh : : lacZ promoter fusions carrying 5' deletions, or replacement mutations it is shown that Fis III is a repressing site and that Fis I and II are activating sites, with the greatest contribution from Fis II. Deletion of the C-terminal domain of the RNA polymerase alpha-subunit abolished Fis-mediated activation of ndh expression, suggesting that ndh has a Class I Fis-activated promoter. In accordance with the established pattern of Fis synthesis, ndh transcription was greatest during exponential growth. Thus, it is suggested that Fis enhances ndh expression during periods of rapid growth, by acting as a Class I activator, and that the binding of tandem FNR dimers represses ndh expression by preventing interaction of the RNA polymerase alpha-subunit with DNA and Fis.
大肠杆菌ndh基因编码NADH脱氢酶II,这是一种在有氧呼吸和硝酸盐呼吸过程中使用的主要脱氢酶。厌氧转录因子FNR通过结合在以-94.5和-50.5为中心的两个位点来抑制ndh的表达。使用与5'缺失的启动子融合进行的体内转录研究证实,在厌氧条件下,两个FNR位点对于最大程度的抑制都是必需的。类组蛋白Fis与ndh启动子中的三个位点结合[以-123(Fis I)、-72(Fis II)和+51(Fis III)为中心]。使用携带5'缺失的ndh::lacZ启动子融合或替代突变表明,Fis III是一个抑制位点,Fis I和II是激活位点,其中Fis II的贡献最大。RNA聚合酶α亚基C末端结构域的缺失消除了Fis介导的ndh表达激活,这表明ndh具有I类Fis激活启动子。根据已确定的Fis合成模式,ndh转录在指数生长期间最大。因此,有人提出,Fis通过作为I类激活剂在快速生长期间增强ndh表达,并且串联FNR二聚体的结合通过阻止RNA聚合酶α亚基与DNA和Fis的相互作用来抑制ndh表达。