Department of Biochemistry and Molecular Biology, University of Southern Denmark, Campusvej 55, Odense M, DK-5230, Odense, Denmark.
J Proteome Res. 2010 Sep 3;9(9):4801-11. doi: 10.1021/pr100513p.
Streptomyces species produce many clinically important secondary metabolites and present a complex developmental cycle that includes programmed cell death (PCD) phenomena and sporulation. Industrial fermentations are usually performed in liquid cultures, conditions in which Streptomyces strains generally do not sporulate, and it was traditionally assumed that no differentiation took place. Recently, the existence of an early compartmentalized mycelium (MI) and a later multinucleated mycelium (MII) were described in solid and liquid cultures. The aim of this work was to compare the proteomes of the different developmental stages in liquid and solid S. coelicolor cultures, in order to give new insights in Streptomyces biology, and improve industrial fermentations. Using iTRAQ labeling and LC-MS/MS analysis of peptides, we demonstrate that differentiation in S. coelicolor liquid cultures is comparable to solid cultures. Eighty-three percent of all the identified proteins showed similar abundance values in MI and MII from liquid and solid cultures. Proteins involved in secondary metabolism (actinorhodin and type II polyketide biosynthesis, beta-lactamases, epimerases) were up-regulated in MII. Proteins involved in primary metabolism (ribosome, Krebs cycle, and energy production) were detected in greater abundance in MI. The most remarkable protein abundance differences between MII from solid and liquid cultures were associated with the final stages of hyphae compartmentalization and spore formation.
链霉菌属产生许多临床上重要的次级代谢产物,并呈现出复杂的发育周期,包括程序性细胞死亡(PCD)现象和孢子形成。工业发酵通常在液体培养中进行,在这种条件下,链霉菌通常不会形成孢子,并且传统上认为没有分化发生。最近,在固体和液体培养中描述了早期分隔的菌丝体(MI)和后期多核的菌丝体(MII)的存在。本工作的目的是比较液体和固体 S. coelicolor 培养物中不同发育阶段的蛋白质组,以深入了解链霉菌生物学,并改善工业发酵。使用 iTRAQ 标记和 LC-MS/MS 分析肽,我们证明了 S. coelicolor 液体培养中的分化与固体培养相当。在 MI 和 MII 中,83%的所有鉴定的蛋白质在液体和固体培养物中的丰度值相似。参与次级代谢(放线紫红素和 II 型聚酮生物合成、β-内酰胺酶、差向异构酶)的蛋白质在 MII 中上调。在 MI 中检测到更多的参与初级代谢(核糖体、三羧酸循环和能量产生)的蛋白质。MII 中固体和液体培养之间最显著的蛋白质丰度差异与菌丝体分隔和孢子形成的最后阶段有关。