1st Department of Internal Medicine, Division of Infectious Diseases, 50924 Cologne, Germany.
Mol Microbiol. 2010 Aug;77(3):642-57. doi: 10.1111/j.1365-2958.2010.07235.x. Epub 2010 Jun 9.
WhiB-like proteins of actinomycetes are known to co-ordinate iron-sulfur (Fe-S) clusters and are believed to have regulatory functions in many essential bacterial processes. The systematic determination of the genome sequences of mycobacteriophages has revealed the presence of several whiB-like genes in these viruses. Here we focussed on the WhiB-like protein of mycobacteriophage TM4, WhiBTM4. We provide evidence that this viral protein is capable of co-ordinating a Fe-S cluster. The UV-visible absorption spectra obtained from freshly purified and reconstituted WhiBTM4 were consistent with the presence of an oxygen sensitive [2Fe-2S] cluster. Expression of WhiBTM4 in the mycobacterial host led to hindered septation resembling a WhiB2 knockout phenotype whereas basal expression of WhiBTM4 led to superinfection exclusion. The quantification of mRNA-levels during phage infection showed that whiBTM4 is a highly transcribed early phage gene and a dominant negative regulator of WhiB2. Strikingly, both apo-WhiB2 of Mycobacterium tuberculosis and apo-WhiBTM4 were capable of binding to the conserved promoter region upstream of the whiB2 gene indicating that WhiB2 regulates its own synthesis which is inhibited in the presence of WhiBTM4. Thus, we provide substantial evidence supporting the hypothesis of viral and bacterial WhiB proteins being important Fe-S containing transcriptional regulators with DNA-binding capability.
放线菌中的 WhiB 样蛋白已知能协调铁硫(Fe-S)簇,并且被认为在许多重要的细菌过程中具有调节功能。分枝杆菌噬菌体基因组序列的系统测定揭示了这些病毒中存在几种 WhiB 样基因。在这里,我们专注于分枝杆菌噬菌体 TM4 的 WhiB 样蛋白 WhiBTM4。我们提供的证据表明,这种病毒蛋白能够协调一个 Fe-S 簇。从新纯化和重建的 WhiBTM4 获得的紫外可见吸收光谱与存在一个对氧气敏感的 [2Fe-2S]簇一致。在分枝杆菌宿主中表达 WhiBTM4 导致了类似于 WhiB2 缺失表型的分隔受阻,而 WhiBTM4 的基础表达导致了超感染排斥。在噬菌体感染过程中对 mRNA 水平的定量表明,whiBTM4 是一个高度转录的早期噬菌体基因,是 WhiB2 的显性负调控因子。引人注目的是,结核分枝杆菌的 apo-WhiB2 和 apo-WhiBTM4 都能够与 WhiB2 基因上游的保守启动子区域结合,表明 WhiB2 调节自身的合成,而在 WhiBTM4 存在的情况下会受到抑制。因此,我们提供了大量证据支持病毒和细菌 WhiB 蛋白作为重要的含 Fe-S 的转录调节因子并具有 DNA 结合能力的假说。