首页> 外文期刊>Acta Biochinica et Biophysica Sinica >nifH Promoter Activity Is Regulated by DNA Supercoiling in Sinorhizobium meliloti
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nifH Promoter Activity Is Regulated by DNA Supercoiling in Sinorhizobium meliloti

机译:nifH启动子活性是由苜蓿中华根瘤菌的DNA超螺旋调控的。

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In prokaryotes, DNA supercoiling regulates the expression of many genes; for example, the expression of Klebsiella pneumoniae nifLA operon depends on DNA negative supercoiling in anaerobically grown cells, which indicates that DNA supercoiling might play a role in gene regulation of the anaerobic response. Since the expression of the nifH promoter in Sinorhizobium meliloti is not repressed by oxygen, it is proposed that the status of DNA supercoiling may not affect the expression of the nifH promoter. We tested this hypothesis by analyzing nifH promoter activity in wild-type and gyr~- Escherichia coli in the presence and absence of DNA gyrase inhibitors. Our results show that gene expression driven by the S. meliloti nifH promoter requires the presence of active DNA gyrase. Because DNA gyrase increases the number of negative superhelical turns in DNA in the presence of ATP, our data indicate that negative supercoiling is also important for nifH promoter activity. Our study also shows that the DNA supercoiling-dependent S. meliloti nifH promoter activity is related to the trans-acting factors NtrC and NifA that activate it. DNA supercoiling appeared to have a stronger effect on NtrC-activated nifH promoter activity than on Nif A-activated promoter activity. Collectively, these results from the S. meliloti nifH promoter model system seem to indicate that, in addition to regulating gene expression during anaerobic signaling, DNA supercoiling may also provide a favorable topology for trans-acting factor binding and promoter activation regardless of oxygen status.
机译:在原核生物中,DNA超螺旋调控着许多基因的表达。例如,肺炎克雷伯氏菌nifLA操纵子的表达取决于厌氧生长细胞中的DNA负超螺旋,这表明DNA超螺旋可能在厌氧反应的基因调控中起作用。由于在氧气中不抑制nifH启动子在苜蓿中华根瘤菌中的表达,因此提出DNA超螺旋的状态可能不影响nifH启动子的表达。我们通过分析存在和不存在DNA促旋酶抑制剂的野生型和gyr_-大肠杆菌中的nifH启动子活性来检验该假设。我们的结果表明,由S. meliloti nifH启动子驱动的基因表达需要活性DNA回旋酶的存在。因为在存在ATP的情况下,DNA旋转酶会增加DNA中超螺旋的负转数,因此我们的数据表明,负超螺旋对于nifH启动子活性也很重要。我们的研究还表明,DNA超螺旋依赖性的苜蓿链球菌nifH启动子活性与激活它的反式作用因子NtrC和NifA有关。 DNA超螺旋似乎对NtrC活化的nifH启动子活性具有比对Nif A活化的启动子活性更强的作用。总的来说,来自S.meliloti nifH启动子模型系统的这些结果似乎表明,除了在厌氧信号传递过程中调节基因表达外,DNA超螺旋也可能为反式作用因子结合和启动子激活提供有利的拓扑结构,而与氧状态无关。

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