Department of Environmental Science and Engineering, Tsinghua University, Beijing 100084, China.
BMC Microbiol. 2010 Oct 16;10:264. doi: 10.1186/1471-2180-10-264.
It is well established in E. coli and Vibrio cholerae that strains harboring mutations in the ferric uptake regulator gene (fur) are unable to utilize tricarboxylic acid (TCA) compounds, due to the down-regulation of key TCA cycle enzymes, such as AcnA and SdhABCD. This down-regulation is mediated by a Fur-regulated small regulatory RNA named RyhB. It is unclear in the γ-proteobacterium S. oneidensis whether TCA is also regulated by Fur and RyhB.
In the present study, we showed that a fur deletion mutant of S. oneidensis could utilize TCA compounds. Consistently, expression of the TCA cycle genes acnA and sdhA was not down-regulated in the mutant. To explore this observation further, we identified a ryhB gene in Shewanella species and experimentally demonstrated the gene expression. Further experiments suggested that RyhB was up-regulated in fur mutant, but that AcnA and SdhA were not controlled by RyhB.
These cumulative results delineate an important difference of the Fur-RyhB regulatory cycle between S. oneidensis and other γ-proteobacteria. This work represents a step forward for understanding the unique regulation in S. oneidensis.
在大肠杆菌和霍乱弧菌中,已经证实携带铁摄取调节基因(fur)突变的菌株由于关键三羧酸(TCA)循环酶如 AcnA 和 SdhABCD 的下调而无法利用三羧酸化合物。这种下调是由 Fur 调节的名为 RyhB 的小调控 RNA 介导的。γ-变形菌 S. oneidensis 中 TCA 是否也受 Fur 和 RyhB 调节尚不清楚。
在本研究中,我们表明 S. oneidensis 的 fur 缺失突变体可以利用 TCA 化合物。一致地,突变体中 TCA 循环基因 acnA 和 sdhA 的表达没有下调。为了进一步探讨这一观察结果,我们在希瓦氏菌属中鉴定了一个 ryhB 基因,并进行了实验验证。进一步的实验表明,RyhB 在 fur 突变体中上调,但 AcnA 和 SdhA 不受 RyhB 控制。
这些累积的结果描绘了 S. oneidensis 和其他 γ-变形菌之间 Fur-RyhB 调节循环的重要区别。这项工作代表了在理解 S. oneidensis 独特调节方面向前迈出的一步。