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NTRC对肺炎克雷伯菌nifLA启动子的转录激活是依赖于螺旋表面的,并且该激活剂可稳定σ⁵⁴ -RNA聚合酶与启动子的相互作用。

Transcriptional activation of the Klebsiella pneumoniae nifLA promoter by NTRC is face-of-the-helix dependent and the activator stabilizes the interaction of sigma 54-RNA polymerase with the promoter.

作者信息

Minchin S D, Austin S, Dixon R A

机构信息

AFRC Institute of Plant Science Research, University of Sussex, Brighton, UK.

出版信息

EMBO J. 1989 Nov;8(11):3491-9. doi: 10.1002/j.1460-2075.1989.tb08514.x.

Abstract

Activation of transcription at the Klebsiella pneumoniae nifLA promoter requires the phosphorylated form of the positive control protein NTRC, together with RNA polymerase modified by the alternative sigma factor sigma 54. Dimethylsulphate and potassium permanganate were used as probes to analyse the interaction of NTRC and sigma 54-RNA polymerase with supercoiled nifLA promoter DNA in vitro. In contrast to the glnAp2 promoter, sigma 54 holoenzyme did not protect guanine residues in the nifLA promoter from methylation in the absence of the activator. We propose that NTRC stabilizes the interaction of sigma 54-RNA polymerase with the -24, -12 region, in addition to its role in catalysing open complex formation. Phosphorylated NTRC binds to two sites located greater than 100 nucleotides upstream of the -24, -12 region; it also induces hyper-methylation of a G residue at -23. Enhanced methylation at -23 is not co-operative with the binding of activator to the upstream sites and may account for the ability of NTRC, when present at high concentration, to activate transcription in the absence of the upstream binding sites. The insertion of spacer mutations at -86 indicates that transcriptional activation of the nifLA promoter at low NTRC concentrations is face-of-the-helix dependent, both in vivo and in vitro. We propose that correct positioning of activator molecules at the upstream binding sites stabilizes the interaction of sigma 54-RNA polymerase with the downstream region via the formation of a DNA loop.

摘要

肺炎克雷伯菌nifLA启动子的转录激活需要正调控蛋白NTRC的磷酸化形式,以及由替代σ因子σ⁵⁴修饰的RNA聚合酶。硫酸二甲酯和高锰酸钾用作探针,以分析NTRC和σ⁵⁴-RNA聚合酶与超螺旋nifLA启动子DNA在体外的相互作用。与glnAp2启动子不同,在没有激活剂的情况下,σ⁵⁴全酶不能保护nifLA启动子中的鸟嘌呤残基不被甲基化。我们提出,NTRC除了在催化开放复合物形成中发挥作用外,还能稳定σ⁵⁴-RNA聚合酶与-24、-12区域的相互作用。磷酸化的NTRC与位于-24、-12区域上游大于100个核苷酸的两个位点结合;它还诱导-23位的一个G残基发生超甲基化。-23位的甲基化增强与激活剂与上游位点的结合不协同,这可能解释了高浓度的NTRC在没有上游结合位点时激活转录的能力。在-86处插入间隔突变表明,在体内和体外,低NTRC浓度下nifLA启动子的转录激活都依赖于螺旋表面。我们提出,激活剂分子在上游结合位点的正确定位通过形成DNA环来稳定σ⁵⁴-RNA聚合酶与下游区域的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a3c/401506/3fb4b6f9aee8/emboj00135-0309-a.jpg

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