Burkovski Andreas
Institut für Biochemie der Universität zu Köln, Zülpicher-Strasse 47, 50674 Cologne, Germany.
FEMS Microbiol Rev. 2003 Dec;27(5):617-28. doi: 10.1016/S0168-6445(03)00067-6.
Nitrogen is an essential component of nearly all complex macromolecules in a bacterial cell, such as proteins, nucleic acids and cell wall components. Accordingly, most prokaryotes have developed elaborate control mechanisms to provide an optimal supply of nitrogen for cellular metabolism and to cope with situations of nitrogen limitation. In this review, recent advances in our knowledge of ammonium uptake, its assimilation, and related regulatory systems in Corynebacterium glutamicum, a Gram-positive soil bacterium used for the industrial production of amino acids, are summarized and discussed with respect to the situation in the bacterial model organisms, Escherichia coli and Bacillus subtilis, and in comparison to the situation in other actinomycetes, namely in mycobacteria and streptomycetes. The regulatory network of nitrogen control in C. glutamicum seems to be a patchwork of different elements. It includes proteins similar to the UTase/GlnK pathway of E. coli and expression regulation by a repressor protein as in B. subtilis, but it lacks an NtrB/NtrC two-component signal transduction system. Furthermore, the C. glutamicum regulation network has unique features, such as a new sensing mechanism. Based on its extremely well-investigated central metabolism, well-established molecular biology tools, a public genome sequence and a newly-established proteome project, C. glutamicum seems to be a suitable model organism for other corynebacteria, such as Corynebacterium diphtheriae and Corynebacterium efficiens.
氮是细菌细胞中几乎所有复杂大分子的重要组成部分,如蛋白质、核酸和细胞壁成分。因此,大多数原核生物已经发展出精细的调控机制,以确保细胞代谢有最佳的氮供应,并应对氮限制情况。在这篇综述中,我们总结并讨论了谷氨酸棒杆菌(一种用于工业生产氨基酸的革兰氏阳性土壤细菌)在铵吸收、同化及其相关调控系统方面的最新研究进展,同时将其与细菌模式生物大肠杆菌和枯草芽孢杆菌的情况进行了比较,并与其他放线菌(即分枝杆菌和链霉菌)的情况进行了对比。谷氨酸棒杆菌的氮调控网络似乎是由不同元素拼凑而成的。它包括与大肠杆菌的UTase/GlnK途径相似的蛋白质,以及与枯草芽孢杆菌中类似的由阻遏蛋白进行的表达调控,但它缺乏NtrB/NtrC双组分信号转导系统。此外,谷氨酸棒杆菌的调控网络具有独特的特征,比如一种新的传感机制。基于其研究极为透彻的中心代谢、成熟的分子生物学工具、公开的基因组序列以及新建立的蛋白质组计划,谷氨酸棒杆菌似乎是其他棒状杆菌(如白喉棒杆菌和高效棒杆菌)的合适模式生物。