Department of Molecular Microbiology, John Innes Centre, Norwich Research Park, Colney Lane, Norwich NR4 7UH, UK.
Mol Microbiol. 2012 Jun;84(6):1033-49. doi: 10.1111/j.1365-2958.2012.08070.x. Epub 2012 May 14.
The chaplin and rodlin proteins together constitute the major components of the hydrophobic sheath that coats the aerial hyphae and spores in Streptomyces, and mutants lacking the chaplins are unable to erect aerial hyphae and differentiate on minimal media. We have gained insight into the developmental regulation of the chaplin (chp) and rodlin (rdl) genes by exploiting a new model species, Streptomyces venezuelae, which sporulates in liquid culture. Using microarrays, the chaplin and rodlin genes were found to be highly induced during submerged sporulation in a bldN-dependent manner. Using σ(BldN) ChIP-chip, we show that this dependence arises because the chaplin and rodlin genes are direct biochemical targets of σ(BldN) . sven3186 (here named rsbN for regulator of sigma BldN), the gene lying immediately downstream of bldN, was also identified as a target of σ(BldN) . Disruption of rsbN causes precocious sporulation and biochemical experiments demonstrate that RsbN functions as a σ(BldN) -specific anti-sigma factor.
查plin 和 rodlin 蛋白共同构成了 Streptomyces 中覆盖气生菌丝和孢子的疏水性鞘的主要成分,缺乏查plin 的突变体无法形成气生菌丝,也无法在最小培养基中分化。我们通过利用一种新的模式生物——委内瑞拉链霉菌(Streptomyces venezuelae),在液体培养中进行孢子形成,深入了解了查plin(chp)和 rodlin(rdl)基因的发育调控。使用微阵列技术,发现 chaplin 和 rodlin 基因在依赖 bldN 的浸没式孢子形成过程中高度诱导。使用 σ(BldN) ChIP-chip,我们表明这种依赖性是因为 chaplin 和 rodlin 基因是 σ(BldN) 的直接生化靶标。bldN 下游的 sven3186(此处命名为 rsbN,即 BldN 的σ因子调控因子)基因也被鉴定为 σ(BldN) 的靶标。rsbN 的破坏导致早熟孢子形成,生化实验表明 RsbN 作为 σ(BldN) 的特异性抗σ因子发挥作用。