Chohji T, Sawada T, Kuno S
Appl Environ Microbiol. 1976 Jun;31(6):864-9. doi: 10.1128/aem.31.6.864-869.1976.
The kinetic behavior of the macromolecule synthesis of Escherichia coli during balanced growth in various media at different temperatures as investigated. The results indicate that macromolecule contents per cell can be expressed as exponential functions of the specific growth rate at a given temperature. It was shown that the content per cell at the zero growth rate was constant in each macromolecule component, irrespective of the growth temperature. The rate of ribonucleic acid (RNA) synthesis per unit weight of deoxyribonucleic acid and that of protein synthesis per unit weight of RNA were taken as efficiencies of RNA and protein synthesis, respectively; both of them were found to be dependent on the growth rate and temperature. The efficiency of RNA synthesis was found to be very high at a high growth rate, whereas that of protein synthesis was found to decrease above certain growth rate. At the same growth rate, an increase in the growth temperature resulted in a decrease in the efficiency of RNA synthesis but an increase in that of protein synthesis.
研究了大肠杆菌在不同温度下于各种培养基中平衡生长期间大分子合成的动力学行为。结果表明,在给定温度下,每个细胞的大分子含量可表示为比生长速率的指数函数。结果表明,零生长速率时每个细胞的含量在每个大分子组分中是恒定的,与生长温度无关。分别将每单位重量脱氧核糖核酸的核糖核酸(RNA)合成速率和每单位重量RNA的蛋白质合成速率作为RNA和蛋白质合成的效率;发现它们两者均取决于生长速率和温度。发现RNA合成效率在高生长速率时非常高,而蛋白质合成效率在超过一定生长速率时会降低。在相同的生长速率下,生长温度的升高导致RNA合成效率降低,但蛋白质合成效率升高。