Schneider Carmen, Mack Matthias
Institute for Technical Microbiology, Department of Biotechnology, Mannheim University of Applied Sciences, Mannheim, Germany.
Mol Microbiol. 2021 Aug;116(2):470-482. doi: 10.1111/mmi.14726. Epub 2021 May 6.
The antibiotic roseoflavin is produced by Streptomyces davaonensis in the stationary phase of growth. To support biosynthesis of the secondary metabolite roseoflavin, S. davaonensis underwent several genetic adaptations with regard to metabolism of the roseoflavin precursor and primary metabolite riboflavin. In addition to 17 riboflavin biosynthesis genes at different chromosomal locations, S. davaonensis contains the riboflavin transporter gene ribM being part of the riboflavin biosynthetic operon ribE1MAB5H. Deletion of this operon generated riboflavin auxotrophic S. davaonensis strains. The finding that S. davaonensis ΔribE1MAB5H was able to grow in a culture medium containing low levels of riboflavin indicated that in addition to RibM, a second riboflavin transporter is present in this bacterium. The S. davaonensis genes ribXY (former rosXY) represented candidate genes for such a second riboflavin transport system and the results of our experiments now show that RibXY from S. davaonensis is a highly efficient riboflavin importer but not a roseoflavin importer.
抗生素玫红菌素由达沃链霉菌在生长稳定期产生。为支持次级代谢产物玫红菌素的生物合成,达沃链霉菌在玫红菌素前体和初级代谢产物核黄素的代谢方面经历了若干基因适应性变化。除了位于不同染色体位置的17个核黄素生物合成基因外,达沃链霉菌还含有核黄素转运基因ribM,它是核黄素生物合成操纵子ribE1MAB5H的一部分。删除该操纵子产生了核黄素营养缺陷型的达沃链霉菌菌株。达沃链霉菌ΔribE1MAB5H能够在含有低水平核黄素的培养基中生长这一发现表明,除了RibM外,该细菌中还存在第二个核黄素转运蛋白。达沃链霉菌基因ribXY(原rosXY)代表了这种第二个核黄素转运系统的候选基因,我们的实验结果现在表明,来自达沃链霉菌的RibXY是一种高效的核黄素导入蛋白,但不是玫红菌素导入蛋白。