Shastri Avantika, Morgan John
School of Chemical Engineering, Purdue University, West Lafayette, IN 47906.
Biochem Mol Biol Educ. 2004 Sep;32(5):314-8. doi: 10.1002/bmb.2004.494032050379.
Nature has created elaborate networks of reactions to convert substrates into the building blocks of living cells as well as a myriad of natural products. The biosynthetic pathways responsible for each metabolite produced have a certain material and energetic "cost" associated with them. The theoretical calculation of these costs aid in analyzing metabolic pathways and engineering metabolic changes in cells. Depending on the complexity and structure of the metabolic system under consideration, different approaches need to be taken for the calculations. In this article, a systematic method to calculate theoretical yields is described for simple linear and cyclic pathways. A published error in the theoretical cost calculations for photorespiration is corrected (J. N. Siedow and D.A. Day (2000) Biochemistry and Molecular Biology of Plants, American Society of Plant Physiologists, Rockville, MD, pp. 676-726). A matrix-vector formulation of the stoichiometric pathways is presented for more complex systems.
大自然构建了复杂的反应网络,将底物转化为活细胞的组成成分以及无数的天然产物。负责产生每种代谢物的生物合成途径都伴随着一定的物质和能量“成本”。这些成本的理论计算有助于分析代谢途径并设计细胞中的代谢变化。根据所考虑的代谢系统的复杂性和结构,需要采用不同的计算方法。本文描述了一种用于计算简单线性和循环途径理论产量的系统方法。纠正了已发表的关于光呼吸理论成本计算中的一个错误(J. N. 西多和D. A. 戴(2000年)《植物生物化学与分子生物学》,美国植物生理学家协会,马里兰州罗克维尔,第676 - 726页)。针对更复杂的系统,提出了化学计量途径的矩阵 - 向量公式。