van Wezel Gilles P, König Miriam, Mahr Kerstin, Nothaft Harald, Thomae Andreas W, Bibb Mervyn, Titgemeyer Fritz
Microbial Development, Leiden Institute of Chemistry, Leiden University, Leiden, The Netherlands.
J Mol Microbiol Biotechnol. 2007;12(1-2):67-74. doi: 10.1159/000096461.
Members of the soil-dwelling prokaryotic genus Streptomyces are indispensable for the recycling of complex polysaccharides, and produce a wide range of natural products. Nutrient limitation is likely to be a major signal for the onset of their development, resulting in spore formation by specialized aerial hyphae. Streptomycetes grow on numerous carbon sources, which they utilize in a preferential manner. The main signaling pathway underlying this phenomenon is carbon catabolite repression, which in streptomycetes is totally dependent on the glycolytic enzyme glucose kinase (Glk). How Glk exerts this fascinating dual role (metabolic and regulatory) is still largely a mystery. We show here that while Glk is made constitutively throughout the growth of Streptomyces coelicolor A3(2), its catalytic activity is modulated in a carbon source-dependent manner: while cultures growing exponentially on glucose exhibit high Glk activity, mannitol- grown cultures show negligible activity. Glk activity was directly proportional to the amount of two Glk isoforms observed by Western blot analysis. The activity profile of GlcP, the major glucose permease, correlated very well with that of Glk. Our data are consistent with a direct interaction between Glk and GlcP, suggesting that a Glk-GlcP permease complex is required for efficient glucose transport by metabolic trapping. This is supported by the strongly reduced accumulation of glucose in glucose kinase mutants. A model to explain our data is presented.
土壤中生活的原核生物链霉菌属的成员对于复杂多糖的循环利用至关重要,并且能产生多种天然产物。营养限制可能是其发育开始的主要信号,导致由特化的气生菌丝形成孢子。链霉菌能利用多种碳源,并优先利用其中一些。这种现象背后的主要信号通路是碳分解代谢物阻遏,在链霉菌中这完全依赖于糖酵解酶葡萄糖激酶(Glk)。Glk如何发挥这种迷人的双重作用(代谢和调节)在很大程度上仍是个谜。我们在此表明,虽然在天蓝色链霉菌A3(2)的整个生长过程中Glk都是组成型合成的,但其催化活性是以碳源依赖的方式调节的:在葡萄糖上指数生长的培养物中Glk活性高,而在甘露醇上生长的培养物中活性可忽略不计。Glk活性与通过蛋白质免疫印迹分析观察到的两种Glk同工型的量成正比。主要葡萄糖通透酶GlcP的活性谱与Glk的活性谱非常吻合。我们的数据与Glk和GlcP之间的直接相互作用一致,表明Glk - GlcP通透酶复合物对于通过代谢捕获进行有效的葡萄糖转运是必需的。葡萄糖激酶突变体中葡萄糖积累的大幅减少支持了这一点。本文提出了一个解释我们数据的模型。