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原绿球藻中两种不同类型的6S RNA。

Two distinct types of 6S RNA in Prochlorococcus.

作者信息

Axmann Ilka M, Holtzendorff Julia, Voss Björn, Kensche Philip, Hess Wolfgang R

机构信息

Humboldt University Berlin, Institute for Theoretical Biology, Invalidenstrasse 43, D-10115 Berlin, Germany.

出版信息

Gene. 2007 Dec 30;406(1-2):69-78. doi: 10.1016/j.gene.2007.06.011. Epub 2007 Jun 22.

Abstract

Different forms of the 6S non-coding RNA (ncRNA) exist in enterobacteria and in B. subtilis but there is only limited information about this RNA from other groups of bacteria. Prochlorococcus is an oceanic, ecologically important, cyanobacterium. It possesses the most streamlined genome within the cyanobacterial phylum, lacking many regulatory proteins and mechanisms well-known from other bacteria. Here we show the accumulation of two distinct types of 6S RNA in Prochlorococcus MED4. One of these RNAs is transcribed from a specific promoter located 23 nucleotides downstream the terminal codon of the purK gene, whereas the longer transcript is produced by processing from a purK-6S RNA precursor. The expression of both 6S transcripts is under diel control, reaching maxima during the day and minima coinciding with the S- and G2-like phases which are typical for synchronized cultures of this prokaryote. Based on data from four closely related Prochlorococcus strains and 11 environmental sequences from the Sargasso Sea, a previously unknown structural element is predicted within the 6S RNA 5' domain by comparative computational analysis. The divergent expression in synchronized cultures and unusual structural domains that were detected based on metagenomic data sets indicate that 6S RNA is an extremely important global regulator in these marine cyanobacteria.

摘要

6S非编码RNA(ncRNA)的不同形式存在于肠杆菌和枯草芽孢杆菌中,但关于其他细菌群体中这种RNA的信息有限。原绿球藻是一种海洋中具有重要生态意义的蓝细菌。它拥有蓝细菌门中最简化的基因组,缺乏许多其他细菌中常见的调控蛋白和机制。在此,我们展示了原绿球藻MED4中两种不同类型6S RNA的积累。其中一种RNA从位于purK基因终止密码子下游23个核苷酸处的特定启动子转录而来,而较长的转录本则由purK - 6S RNA前体加工产生。两种6S转录本的表达都受昼夜节律控制,在白天达到最大值,在与该原核生物同步培养典型的S期和G2期相似的阶段达到最小值。基于来自四个密切相关的原绿球藻菌株的数据以及马尾藻海的11个环境序列,通过比较计算分析预测在6S RNA的5'结构域内存在一个以前未知的结构元件。基于宏基因组数据集检测到的同步培养物中的差异表达和不寻常的结构域表明,6S RNA是这些海洋蓝细菌中一种极其重要的全局调节因子。

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