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链霉菌 rpsO-pnp 操纵子的 RNase III 依赖性表达。

RNase III-dependent expression of the rpsO-pnp operon of Streptomyces coelicolor.

机构信息

Department of Biology, Emory University, Atlanta, GA 30322, USA.

出版信息

J Bacteriol. 2011 Sep;193(17):4371-9. doi: 10.1128/JB.00452-11. Epub 2011 Jul 8.

Abstract

We have examined the expression of the rpsO-pnp operon in an RNase III (rnc) mutant of Streptomyces coelicolor. Western blotting demonstrated that polynucleotide phosphorylase (PNPase) levels increased in the rnc mutant, JSE1880, compared with the parental strain, M145, and this observation was confirmed by polymerization assays. It was observed that rpsO-pnp mRNA levels increased in the rnc mutant by 1.6- to 4-fold compared with M145. This increase was observed in exponential, transition, and stationary phases, and the levels of the readthrough transcript, initiated upstream of rpsO in the rpsO-pnp operon; the pnp transcript, initiated in the rpsO-pnp intergenic region; and the rpsO transcript all increased. The increased levels of these transcripts in JSE1880 reflected increased chemical half-lives for each of the three. We demonstrated further that overexpression of the rpsO-pnp operon led to significantly higher levels of PNPase activity in JSE1880 compared to M145, reflecting the likelihood that PNPase expression is autoregulated in an RNase III-dependent manner in S. coelicolor. To explore further the increase in the level of the pnp transcript initiated in the intergenic region in JSE1880, we utilized that transcript as a substrate in assays employing purified S. coelicolor RNase III. These assays revealed the presence of hitherto-undiscovered sites of RNase III cleavage of the pnp transcript. The position of those sites was determined by primer extension, and they were shown to be situated in the loops of a stem-loop structure.

摘要

我们研究了链霉菌 rnc 突变株中 rpsO-pnp 操纵子的表达。Western blot 实验表明,与亲本菌株 M145 相比,多核苷酸磷酸化酶(PNPase)在 rnc 突变株 JSE1880 中的水平增加,聚合实验进一步证实了这一观察结果。结果发现,与 M145 相比,rnc 突变株 rpsO-pnp mRNA 水平增加了 1.6 到 4 倍。这种增加在指数、过渡和静止期都观察到,而且启动子上游 rpsO 基因的通读转录本、rpsO-pnp 基因间区起始的 pnp 转录本和 rpsO 转录本的水平都增加了。JSE1880 中这些转录本水平的增加反映了它们各自半衰期的延长。我们进一步证明,rpsO-pnp 操纵子的过表达导致 JSE1880 中 PNPase 活性水平显著高于 M145,这反映了 PNPase 表达可能在链霉菌中以依赖于 RNase III 的方式自动调节。为了进一步探索 JSE1880 中基因间区起始的 pnp 转录本水平的增加,我们将该转录本用作纯化的链霉菌 RNase III 分析中的底物。这些分析揭示了以前未发现的 pnp 转录本中 RNase III 切割位点的存在。这些位点的位置通过引物延伸确定,它们位于茎环结构的环中。

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