Han Sung Ok, Inui Masayuki, Yukawa Hideaki
College of Life Sciences and Biotechnology, Korea University, Seoul 136-701, Republic of Korea.
Molecular Microbiology and Biotechnology Group, Research Institute of Innovative Technology for the Earth (RITE), Kyoto 619-0292, Japan.
Microbiology (Reading). 2008 Oct;154(Pt 10):3073-3083. doi: 10.1099/mic.0.2008/019828-0.
The effect of different carbon sources on the expression of tricarboxylic acid (TCA) cycle genes, along with glyoxylate bypass genes, in Corynebacterium glutamicum was determined. All TCA cycle genes were coordinately expressed in medium containing acetate. Growth in the presence of acetate gave rise to abundant expression of most TCA cycle genes, with the level of gltA transcript being the highest. However, when the cells entered the stationary phase triggered by acetate exhaustion, all genes were repressed, except sucCD and mdhB, which were slightly induced. Acetate withdrawal from the growth medium during the exponential phase also led to rapid repression of most TCA cycle genes and a corresponding twofold increase in the expression of sucCD, which were strongly induced by citrate and succinate. In addition, glucose depletion during the stationary phase led to a corresponding 8-20-fold induction of the sucCD, aceA and aceB genes. Addition of glucose to acetate medium resulted in about 10-fold induction of sucCD. The strong dependence of TCA cycle sucCD and glyoxylate bypass aceA and aceB expression on carbon source availability was confirmed and the regulatory system will be studied precisely.
测定了不同碳源对谷氨酸棒杆菌中三羧酸(TCA)循环基因以及乙醛酸循环支路基因表达的影响。所有TCA循环基因在含有乙酸盐的培养基中协同表达。在乙酸盐存在下生长会导致大多数TCA循环基因大量表达,其中gltA转录本水平最高。然而,当细胞进入由乙酸盐耗尽引发的稳定期时,除了sucCD和mdhB被轻微诱导外,所有基因均被抑制。在指数生长期从生长培养基中去除乙酸盐也会导致大多数TCA循环基因迅速被抑制,并且sucCD的表达相应增加两倍,其受到柠檬酸盐和琥珀酸盐的强烈诱导。此外,稳定期葡萄糖耗尽会导致sucCD、aceA和aceB基因相应地诱导8 - 20倍。向乙酸盐培养基中添加葡萄糖会导致sucCD诱导约10倍。证实了TCA循环的sucCD以及乙醛酸循环支路的aceA和aceB表达对碳源可用性的强烈依赖性,并将对调控系统进行精确研究。