Piette André, Derouaux Adeline, Gerkens Pascal, Noens Elke E E, Mazzucchelli Gabriel, Vion Sébastien, Koerten Henk K, Titgemeyer Fritz, De Pauw Edwin, Leprince Pierre, van Wezel Gilles P, Galleni Moreno, Rigali Sébastien
Centre d'Ingénierie des Protéines, Université de Liège, Institut de Chimie B6a, Sart-Tilman, B-4000 Liège, Belgium.
J Proteome Res. 2005 Sep-Oct;4(5):1699-708. doi: 10.1021/pr050155b.
The complete understanding of the morphological differentiation of streptomycetes is an ambitious challenge as diverse sensors and pathways sensitive to various environmental stimuli control the process. Germination occupies a particular position in the life cycle as the good achievement of the process depends on events occurring both during the preceding sporulation and during germination per se. The cyclic AMP receptor protein (crp) null mutant of Streptomyces coelicolor, affected in both sporulation and germination, was therefore presented as a privileged candidate to highlight new proteins involved in the shift from dormant to germinating spores. Our multidisciplinary approach-combining in vivo data, the analysis of spores morphological properties, and a proteome study-has shown that Crp is a central regulatory protein of the life cycle in S. coelicolor; and has identified spores proteins with statistically significant increased or decreased expression that should be listed as priority targets for further investigations on proteins that trigger both ends of the life cycle.
由于多种对不同环境刺激敏感的传感器和途径控制着链霉菌的形态分化过程,因此全面了解该过程是一项艰巨的挑战。萌发在生命周期中占据着特殊的位置,因为该过程的良好完成取决于前一个孢子形成阶段以及萌发本身所发生的事件。因此,天蓝色链霉菌的环腺苷酸受体蛋白(crp)缺失突变体,其孢子形成和萌发均受到影响,被视为一个特殊的候选对象,以突出显示参与从休眠孢子到萌发孢子转变过程的新蛋白质。我们的多学科方法——结合体内数据、孢子形态特性分析和蛋白质组研究——表明Crp是天蓝色链霉菌生命周期的核心调节蛋白;并且已经鉴定出孢子蛋白质的表达在统计学上有显著的增加或减少,这些蛋白质应被列为进一步研究触发生命周期两端的蛋白质的优先目标。