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A σ54-dependent promoter in the regulatory region of the Escherichia coli rpoH gene

机译:σ54依赖于大肠杆菌RPOH基因的调节区中的促进剂

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The Escherichia coli rpoH gene is transcribed from four known and differently regulated promoters: P1, P3, P4 and P5. This study demonstrates that the conserved consensus sequence of the σ54 promoter in the regulatory region of the rpoH gene, described previously, is a functional promoter, P6. The evidence for this conclusion is: (i) the specific binding of the σ54–RNAP holoenzyme to P6, (ii) the location of the transcription start site at the predicted position (C, 30?nt upstream of ATG) and (iii) the dependence of transcription on σ54 and on an ATP-dependent activator. Nitrogen starvation, heat shock, ethanol and CCCP treatment did not activate transcription from P6 under the conditions examined. Two activators of σ54 promoters, PspF and NtrC, were tested but neither of them acted specifically. Therefore, PspFΔHTH, a derivative of PspF, devoid of DNA binding capability but retaining its ATPase activity, was used for transcription in vitro, taking advantage of the relaxed specificity of ATP-dependent activators acting in solution. In experiments in vivo overexpression of PspFΔHTH from a plasmid was employed. Thus, the σ54-dependent transcription capability of the P6 promoter was demonstrated both in vivo and in vitro, although the specific conditions inducing initiation of the transcription remain to be elucidated. The results clearly indicate that the closed σ54–RNAP–promoter initiation complex was formed in vitro and in vivo and needed only an ATP-dependent activator to start transcription.
机译:大肠杆菌RPOH基因由四种已知的和不同调节的启动子转录:P1,P3,P4和P5。该研究表明,先前描述的RPOH基因调节区中σ54启动子的保守共识序列是官能启动子P6。该结论的证据是:(i)σ54-rnap全酶至p6,(ii)在预测位置(C,30≤NTG)和(III)上游的C转录开始部位的位置和(iii)的特异性结合转录对σ54和ATP依赖性活化剂的依赖性。氮饥饿,热休克,乙醇和CCCP处理未在所检查条件下激活P6的转录。测试的两种激活剂,PSPF和NTRC,但它们都没有具体作用。因此,PSPFΔHTH,PSPF的衍生物,没有DNA结合能力但保持其ATP酶活性,用于在体外转录,利用ATP依赖性活化剂作用于溶液的宽松特异性。在采用质粒的PSPFΔHTH的体内过表达的实验中。因此,在体内和体外证明了P6启动子的σ54依赖性转录能力,尽管诱导转录的起始的特定条件仍然被阐明。结果清楚地表明,在体外和体内形成闭合σ54-RNAP-启动子引发复合物,并且仅需要ATP依赖性活化剂以开始转录。

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