Lambert Stéphany, Traxler Matthew F, Craig Matthias, Maciejewska Marta, Ongena Marc, van Wezel Gilles P, Kolter Roberto, Rigali Sébastien
Centre for Protein Engineering, University of Liège, Institut de Chimie B6a, B-4000 Liège, Belgium.
Metallomics. 2014 Aug;6(8):1390-9. doi: 10.1039/c4mt00068d.
Streptomyces coelicolor is an important model organism for developmental studies of filamentous GC-rich actinobacteria. The genetic characterization of mutants of S. coelicolor blocked at the vegetative mycelium stage, the so-called bald (bld) mutants that are unable to erect spore-forming aerial hyphae, has opened the way to discovering the molecular basis of development in actinomycetes. Desferrioxamine (DFO) production and import of ferrioxamines (FO; iron-complexed DFO) are key to triggering morphogenesis of S. coelicolor and we show here that growth of S. coelicolor on the reference medium for Streptomyces developmental studies is fully dependent on DFO biosynthesis. UPLC-ESI-MS analysis revealed that all bld mutants tested are affected in DFO biosynthesis, with bldA, bldJ, and ptsH mutants severely impaired in DFO production, while bldF, bldK, crr and ptsI mutants overproduce DFO. Morphogenesis of bldK and bldJ mutants was recovered by supplying exogenous iron. Transcript analysis showed that the bldJ mutant is impaired in expression of genes involved in the uptake of FO, whereas transcription of genes involved in both DFO biosynthesis and FO uptake is increased in bldK mutants. Our study allows proposing altered DFO production and/or FO uptake as a novel phenotypic marker of many S. coelicolor bld mutants, and strengthens the role of siderophores and iron acquisition in morphological development of actinomycetes.
天蓝色链霉菌是富含GC的丝状放线菌发育研究的重要模式生物。对天蓝色链霉菌在营养菌丝体阶段受阻的突变体进行遗传特征分析,即所谓的秃头(bld)突变体,它们无法形成产孢气生菌丝,这为发现放线菌发育的分子基础开辟了道路。去铁胺(DFO)的产生以及铁胺(FO;与铁络合的DFO)的导入是触发天蓝色链霉菌形态发生的关键,我们在此表明,天蓝色链霉菌在用于链霉菌发育研究的参考培养基上的生长完全依赖于DFO生物合成。超高效液相色谱-电喷雾电离质谱分析表明,所有测试的bld突变体在DFO生物合成方面均受到影响,其中bldA、bldJ和ptsH突变体在DFO产生方面严重受损,而bldF、bldK、crr和ptsI突变体则过量产生DFO。通过供应外源铁可恢复bldK和bldJ突变体的形态发生。转录分析表明,bldJ突变体在参与FO摄取的基因表达方面受损,而在bldK突变体中,参与DFO生物合成和FO摄取的基因转录均增加。我们的研究提出改变DFO产生和/或FO摄取作为许多天蓝色链霉菌bld突变体的一种新的表型标记,并强化了铁载体和铁获取在放线菌形态发育中的作用。