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5'区域在调节枯草芽孢杆菌中sdh mRNA稳定性方面的重要性。

The importance of the 5'-region in regulating the stability of sdh mRNA in Bacillus subtilis.

作者信息

Melin L, Fridén H, Dehlin E, Rutberg L, von Gabain A

机构信息

Department of Bacteriology, Karolinska Institutet, Stockholm, Sweden.

出版信息

Mol Microbiol. 1990 Nov;4(11):1881-9. doi: 10.1111/j.1365-2958.1990.tb02037.x.

Abstract

The decay of the polycistronic Bacillus subtilis sdh mRNA was analysed using probes specific for each of the component cistrons, sdhC, sdhA and sdhB. In exponentially growing cells, the entire sdh mRNA seems to decay with an 'all or nothing' mechanism and with a uniform half-life of 2-3 min for all cistrons. In stationary-phase cells, the half-life of the 5'-part had dropped to about 0.6 min whereas that of the 3'-part was about 1.2 min. Decay of sdh mRNA was also measured in exponentially growing cells containing a 'down-mutation' in the ribosomal binding site preceding sdhC which decreases the expression of sdhC by about 90%. The mutation has a moderate effect on expression of the downstream cistron sdhA. In this mutant, the half-life of the 5'-part of sdh mRNA was about 0.5 min (i.e. the same as in stationary phase wild-type cells) and the half-life of the 3'-part about 1.3 min. Also, analysis of the decay of an sdh-cat fusion transcript revealed that the sdh (5') part decayed more rapidly than the cat part and this difference was more pronounced in stationary-phase cells compared to exponentially growing cells. The results of these experiments demonstrate the importance of the 5'-segment of sdh mRNA in controlling the stability of the transcript under different growth conditions.

摘要

使用针对多顺反子枯草芽孢杆菌sdh mRNA各组成顺反子(sdhC、sdhA和sdhB)的特异性探针,对其衰变进行了分析。在指数生长的细胞中,整个sdh mRNA似乎以“全或无”机制衰变,所有顺反子的半衰期均一,为2 - 3分钟。在稳定期细胞中,5'部分的半衰期降至约0.6分钟,而3'部分的半衰期约为1.2分钟。在sdhC之前的核糖体结合位点发生“下调突变”的指数生长细胞中,也测量了sdh mRNA的衰变,该突变使sdhC的表达降低约90%。该突变对下游顺反子sdhA的表达有中等程度的影响。在这个突变体中,sdh mRNA 5'部分的半衰期约为0.5分钟(即与稳定期野生型细胞相同),3'部分的半衰期约为1.3分钟。此外,对sdh - cat融合转录本衰变的分析表明,sdh(5')部分的衰变比cat部分更快,与指数生长的细胞相比,这种差异在稳定期细胞中更为明显。这些实验结果证明了sdh mRNA的5'片段在不同生长条件下控制转录本稳定性中的重要性。

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