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藻酸盐基因激活中A1gR1结合位点的类增强子活性:位置、方向和序列特异性。

Enhancer-like activity of A1gR1-binding site in alginate gene activation: positional, orientational, and sequence specificity.

作者信息

Fujiwara S, Zielinski N A, Chakrabarty A M

机构信息

Department of Microbiology & Immunology (M/C 790), University of Illinois College of Medicine, Chicago 60612.

出版信息

J Bacteriol. 1993 Sep;175(17):5452-9. doi: 10.1128/jb.175.17.5452-5459.1993.

Abstract

Significant activation of promoters of alginate genes such as algD or algC occurs in mucoid Pseudomonas aeruginosa during its proliferation in the lungs of cystic fibrosis patients. These promoters have been shown to be responsive to environmental signals such as high osmolarity. The signaling is mediated by a so-called two-component signal transduction system, in which a soluble protein, AlgR2, undergoes autophosphorylation and transfers the phosphate to a DNA-binding response regulator protein, AlgR1. The phosphorylated form of AlgR1 has a high affinity for binding at upstream sequences of both the algC and algD promoters. Two AlgR1-binding sites (ABS) have been reported upstream of the algC gene. One of the two ABSs (algC-ABS1, located at -94 to -81) is critical for the algC activation process, while the second ABS (algC-ABS2, located at +161 to +174) is only weakly active. We now report the presence of a third ABS within the structural gene of algC, and this ABS (algC-ABS3) is also important for algC promoter activation. algC-ABS1 can be replaced functionally by algC-ABS2, algD-ABS1, or algD-ABS2 and somewhat weakly by algD-ABS3. Introduction of a half-integral turn in the DNA helix between the algC site of transcription initiation and algC-ABS1 allowed only slight reduction of promoter activity, suggesting that the binding site could be appreciably functional even when present in the opposite face of the helix. Activation of the algC promoter is independent of the relative location (upstream or downstream of the mRNA start site), the number of copies, or the orientation of algC-ABS1, suggesting that it behaves like a eukaryotic enhancer element in promoting transcription from the algC promoter.

摘要

在囊性纤维化患者肺部增殖过程中,黏液型铜绿假单胞菌会出现藻酸盐基因(如algD或algC)启动子的显著激活。这些启动子已被证明对高渗透压等环境信号有反应。信号传导由一种所谓的双组分信号转导系统介导,其中可溶性蛋白AlgR2进行自磷酸化,并将磷酸基团转移到DNA结合反应调节蛋白AlgR1上。AlgR1的磷酸化形式对algC和algD启动子上游序列的结合具有高亲和力。据报道,algC基因上游有两个AlgR1结合位点(ABS)。这两个ABS之一(algC-ABS1,位于-94至-81)对algC激活过程至关重要,而第二个ABS(algC-ABS2,位于+161至+174)活性较弱。我们现在报告在algC的结构基因内存在第三个ABS,并且这个ABS(algC-ABS3)对algC启动子激活也很重要。algC-ABS1在功能上可被algC-ABS2、algD-ABS1或algD-ABS2替代,被algD-ABS3替代时活性稍弱。在转录起始的algC位点与algC-ABS1之间的DNA螺旋中引入半圈扭转,仅使启动子活性略有降低,这表明即使结合位点位于螺旋的相反面,它仍可能具有明显的功能。algC启动子的激活与algC-ABS1的相对位置(mRNA起始位点的上游或下游)、拷贝数或方向无关,这表明它在促进algC启动子转录方面的行为类似于真核增强子元件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0dbc/206601/0d5bd4bc5951/jbacter00059-0171-a.jpg

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