Department of Ecology and Evolution, State University of New York at Stony Brook, Stony Brook, New York 11794, USA.
Biotechnol Bioeng. 1991 Feb 20;37(4):334-43. doi: 10.1002/bit.260370407.
Using data from the literature, a method is adopted for determining the empirical composition and the unit carbon formula for dried Escherichia coli K-12 cells by summing the quantities of C, H, O, N, P, and S in each of the major classes of macromolecular substances comprising the cellular biomass. With these data and the molar growth yield of cells on succinic acid, equations are written representing the anabolism and catabolism of E. coli K-12 on this quantity of substrate. The enthalpy change accompanying catabolism can be calculated directly using standard enthalpies of formation because there is no term representing cellular substance. The enthalpy change accompanying anabolism is calculated to be very small or zero using microcalorimetric and other data from which the enthalpy of formation of a unit quantity of living cellular substance can be obtained. This indicates that the net enthalpy change accompanying the growth process (anabolism plus catabolism) is the same as that calculated for catabolism alone, in agreement with the same conclusion by several investigators using direct microcalorimetry. The method described here of determining the unit carbon formula and the quantity of ash remaining after cellular combustion is compared to that conventionally used in which cellular P and S is considered either to be negligible or to be a part of the ash. It is concluded that equations representing anabolism and the growth process can be written more accurately using the presently described method, leading to more accurate thermodynamic calculations.
利用文献中的数据,通过将组成细胞生物质的主要大分子物质类别的 C、H、O、N、P 和 S 的量相加,采用一种方法来确定干燥大肠杆菌 K-12 细胞的经验组成和单位碳公式。有了这些数据以及细胞在琥珀酸上的摩尔生长产率,可以写出代表大肠杆菌 K-12 在此数量的底物上的合成代谢和分解代谢的方程。由于没有代表细胞物质的项,因此可以直接使用标准生成焓来计算伴随分解代谢的焓变。使用微量量热法和其他数据计算伴随合成代谢的焓变,这些数据可以获得单位量活细胞物质的生成焓,计算结果表明非常小或为零。这表明伴随生长过程(合成代谢加分解代谢)的净焓变与单独分解代谢计算出的相同,这与几位使用直接微量量热法的研究人员得出的相同结论一致。本文描述的确定单位碳公式和细胞燃烧后剩余灰分的方法与传统方法进行了比较,传统方法认为细胞 P 和 S 可以忽略不计或属于灰分的一部分。结论是,使用目前描述的方法可以更准确地写出代表合成代谢和生长过程的方程,从而进行更准确的热力学计算。