Massé Eric, Vanderpool Carin K, Gottesman Susan
Laboratory of Molecular Biology, National Cancer Institute, National Institutes of Health, Bethesda, Maryland, USA.
J Bacteriol. 2005 Oct;187(20):6962-71. doi: 10.1128/JB.187.20.6962-6971.2005.
RyhB is a noncoding RNA regulated by the Fur repressor. It has previously been shown to cause the rapid degradation of a number of mRNAs that encode proteins that utilize iron. Here we examine the effect of ectopic RyhB production on global gene expression by microarray analysis. Many of the previously identified targets were found, as well as other mRNAs encoding iron-binding proteins, bringing the total number of regulated operons to at least 18, encoding 56 genes. The two major operons involved in Fe-S cluster assembly showed different behavior; the isc operon appears to be a direct target of RyhB action, while the suf operon does not. This is consistent with previous findings suggesting that the suf genes but not the isc genes are important for Fe-S cluster synthesis under iron-limiting conditions, presumably for essential iron-binding proteins. In addition, we observed repression of Fur-regulated genes upon RyhB expression, interpreted as due to intracellular iron sparing resulting from reduced synthesis of iron-binding proteins. Our results demonstrate the broad effects of a single noncoding RNA on iron homeostasis.
RyhB是一种受铁摄取调节蛋白(Fur)阻遏物调控的非编码RNA。此前已证明它会导致许多编码利用铁的蛋白质的mRNA快速降解。在此,我们通过微阵列分析研究异位表达RyhB对全局基因表达的影响。我们发现了许多先前确定的靶标,以及其他编码铁结合蛋白的mRNA,使得受调控的操纵子总数至少达到18个,编码56个基因。参与铁硫簇组装的两个主要操纵子表现出不同的行为;isc操纵子似乎是RyhB作用的直接靶标,而suf操纵子则不是。这与先前研究结果一致,即表明在铁限制条件下,suf基因而非isc基因对于铁硫簇合成很重要,可能是为了合成必需的铁结合蛋白。此外,我们观察到RyhB表达后Fur调控基因受到抑制,这被解释为是由于铁结合蛋白合成减少导致细胞内铁节省所致。我们的结果证明了单个非编码RNA对铁稳态具有广泛影响。