首页> 外文期刊>Nucleic Acids Research >TRANSCRIPTION ACTIVATION BY THE BACTERIOPHAGE MU MOR PROTEIN - ANALYSIS OF PROMOTER MUTATIONS IN P-M IDENTIFIES A NEW REGION REQUIRED FOR PROMOTER FUNCTION
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TRANSCRIPTION ACTIVATION BY THE BACTERIOPHAGE MU MOR PROTEIN - ANALYSIS OF PROMOTER MUTATIONS IN P-M IDENTIFIES A NEW REGION REQUIRED FOR PROMOTER FUNCTION

机译:噬菌体MU蛋白对转录的激活-分析P-M中的启动子突变确定了启动子功能所需的新区域

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摘要

Middle transcription of bacteriophage Mu requires Escherichia coli RNA polymerase holoenzyme and a Mu-encoded protein, Mor. Consistent with these requirements, the middle promoter, P-m, has a recognizable -10 region but lacks a -35 region, Mutagenesis of this promoter (from -70 to +10) was performed using mutagenic oligonucleotide-directed PCR, The resulting fragments were cloned into a promoter-lacZfusion vector and analyzed for promoter activity by assaying beta-galactosidase production, Single point mutations with a Down phenotype were clustered in three regions: the -10 region, the Mor footprint region and the spacer between them, Gel retardation experiments with purified Mor protein and promoter mutants demonstrated that sequences important for Mor binding are located within the Mor footprint region and lead us to propose the existence of a dyad symmetry element involved in Mor binding, In agreement with this prediction, glutaraldehyde crosslinking of Mor in solution generated a species with the size of a dimer, These experiments also identified an unusual group of mutations located in the spacer region adjacent to the Mor footprint, These mutations alter promoter activity without affecting Mor binding, A circular permutation assay revealed that Mor does not introduce a significant bend upon binding to its target sequence.
机译:噬菌体Mu的中间转录需要大肠杆菌RNA聚合酶全酶和Mu编码的蛋白Mor。符合这些要求,中间启动子Pm具有可识别的-10区,但没有-35区,使用诱变寡核苷酸定向PCR对该启动子进行诱变(从-70到+10),克隆得到的片段到启动子-lacZfusion载体中,并通过检测β-半乳糖苷酶的产生来分析启动子的活性,具有Down表型的单点突变被聚集在三个区域:-10区,Mor足迹区和它们之间的间隔区,纯化的Mor蛋白和启动子突变体表明,对于Mor结合而言重要的序列位于Mor足迹区域内,这使我们提出了与Mor结合有关的二重对称元素的存在。一个具有二聚体大小的物种,这些实验还发现了位于间隔区的一组异常突变在与Mor足迹相邻的位置,这些突变改变启动子活性,而不影响Mor的结合。圆形置换分析表明,Mor在与其靶序列结合时不会引入明显的弯曲。

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