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首页> 外文期刊>American Journal of Biochemistry and Biotechnology >Assessment of Site Specific Mutational Effect on Transcription Initiation at Escherichia coli Promoter
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Assessment of Site Specific Mutational Effect on Transcription Initiation at Escherichia coli Promoter

机译:大肠杆菌启动子转录起始位点特异性突变效应的评估

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摘要

Problem statement: It is widely accepted thought that the weak promoters control the RNA synthesis and play regulatory role in complex genetic networks in bacterial system. An experiment had been designed to address whether mutations in the -16/-17 region affect the rate of transcription at an activator-independent promoter in E. coli or not? Approach: The aim of this study was to determine whether mutations in the -16/-17 region affect the rate of expression at an activator-dependent promoter in JM109 strain of E. coli. Primers were constructed to amplify the mutant promoter genes through PCR. The amplified PCR product was checked and then inserted into the MCS region of pAA128 plasmid. Further the plasmid vector was transformed into JM109 strain of E. coli and then cloned the selected transformats. Finally, the plasmid from each mutant colony was then sequenced using the protocol supplied with the Amersham Pharmacia Biotech T7 sequencing Kit. The JM109 cultures for which the sequences were determined, then assayed for p-galactosidase activity to assess the rate of gene expression from the altered promoters. Results: The present investigation revealed that the extended-10 promoter region has a substantial effect on the rate of transcription at weak promoter sequence and also bearing little resemblance to the consensus sequence recognized by RNA. The expression of the genetically engineered plasmid proved that the 2 bps (-16 and -17 base pair) found adjacently upstream of the extended-10 promoterhave an effect on the level of transcription. This was achieved by site specific base substitutions into the weak promoter of a modified lac operon lacking any activator or represser binding sites. The results from gene expression assays of several mutants showed a distinct preference for either GG or TT located adjacently upstream of the extended promoter element. Thus the present study emphasized that extended promoter region also played a key role in regulation transcription initiation in JM109 strain of E. coli. Conclusion: The present study concluded that the site specific changed in the extended promoter regions, particularly the-17/-16 base pairs had greater influence in the transcription initiation in E. coli. Thus the promoter engineering study will definitely pave the way to do both, on or off the genetic switches in bacterial system according to our needs to produce high protein of interest or decrease or block the expression of a particular unwanted protein.
机译:问题陈述:弱启动子控制RNA合成并在细菌系统中复杂的遗传网络中起调节作用,这已被广泛接受。设计了一个实验来解决-16 / -17区中的突变是否影响大肠杆菌中不依赖激活剂的启动子的转录速率?方法:本研究的目的是确定-16 / -17区中的突变是否影响大肠杆菌JM109菌株中依赖于激活子的启动子的表达率。构建引物以通过PCR扩增突变体启动子基因。检查扩增的PCR产物,然后插入pAA128质粒的MCS区域。进一步将质粒载体转化到大肠杆菌的JM109菌株中,然后克隆选择的转化子。最后,然后使用Amersham Pharmacia Biotech T7测序试剂盒提供的方案对每个突变菌落的质粒进行测序。确定其序列的JM109培养物,然后测定p-半乳糖苷酶活性,以评估来自改变的启动子的基因表达速率。结果:本研究表明,延伸的10个启动子区域对弱启动子序列的转录速率具有实质性影响,并且与RNA识别的共有序列几乎没有相似之处。基因工程质粒的表达证明,在extended-10启动子上游附近发现的2 bps(-16和-17个碱基对)对转录水平有影响。这是通过将位点特异性碱基取代成缺少任何激活子或阻遏物结合位点的修饰的lac操纵子的弱启动子来实现的。来自几个突变体的基因表达测定的结果表明,对延伸的启动子元件上游相邻的GG或TT有明显的偏爱。因此,本研究强调扩展的启动子区域在大肠杆菌JM109菌株的调控转录起始中也起着关键作用。结论:本研究得出结论,在延伸的启动子区域,特别是在17 / -16碱基对中,位点特异性改变对大肠杆菌的转录起始具有更大的影响。因此,启动子工程研究肯定会根据我们产生高目标蛋白或减少或阻止特定有害蛋白表达的需要,在细菌系统中的遗传开关上进行或关闭这两种方法。

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