Jørgensen Casper M, Hammer Karin, Jensen Peter R, Martinussen Jan
Bacterial Physiology and Genetics, BioCentrum-DTU, Technical University of Denmark, Kgs. Lyngby, Denmark.
Eur J Biochem. 2004 Jun;271(12):2438-45. doi: 10.1111/j.1432-1033.2004.04168.x.
The pyrG gene from Lactococcus lactis encodes CTP synthase (EC 6.4.3.2), an enzyme converting UTP to CTP. A series of strains were constructed with different levels of pyrG expression by insertion of synthetic constitutive promoters with different strengths in front of pyrG. These strains expressed pyrG levels in a range from 3 to 665% relative to the wild-type expression level. Decreasing the level of CTP synthase to 43% had no effect on the growth rate, showing that the capacity of CTP synthase in the cell is in excess in a wild-type strain. We then studied how pyrG expression affected the intracellular pool sizes of nucleotides and the correlation between pyrG expression and nucleotide pool sizes was quantified using metabolic control analysis in terms of inherent control coefficients. At the wild-type expression level, CTP synthase had full control of the CTP concentration with a concentration control coefficient close to one and a negative concentration control coefficient of -0.28 for the UTP concentration. Additionally, a concentration control coefficient of 0.49 was calculated for the dCTP concentration. Implications for the homeostasis of nucleotide pools are discussed.
乳酸乳球菌的pyrG基因编码CTP合酶(EC 6.4.3.2),该酶可将UTP转化为CTP。通过在pyrG前插入不同强度的合成组成型启动子,构建了一系列具有不同pyrG表达水平的菌株。这些菌株的pyrG表达水平相对于野生型表达水平在3%至665%的范围内。将CTP合酶水平降低至43%对生长速率没有影响,这表明在野生型菌株中细胞内CTP合酶的能力是过剩的。然后,我们研究了pyrG表达如何影响核苷酸的细胞内池大小,并使用代谢控制分析根据固有控制系数对pyrG表达与核苷酸池大小之间的相关性进行了量化。在野生型表达水平下,CTP合酶对CTP浓度具有完全控制,浓度控制系数接近1,而对UTP浓度的负浓度控制系数为-0.28。此外,计算出dCTP浓度的浓度控制系数为0.49。本文还讨论了其对核苷酸池稳态的影响。