Cameron D C, Tong I T
Department of Chemical Engineering, University of Wisconsin-Madison 53706-1691.
Appl Biochem Biotechnol. 1993 Jan-Feb;38(1-2):105-40. doi: 10.1007/BF02916416.
Metabolic engineering is defined as the purposeful modification of intermediary metabolism using recombinant DNA techniques. Cellular engineering, a more inclusive term, is defined as the purposeful modification of cell properties using the same techniques. Examples of cellular and metabolic engineering are divided into five categories: 1. Improved production of chemicals already produced by the host organism; 2. Extended substrate range for growth and product formation; 3. Addition of new catabolic activities for degradation of toxic chemicals; 4. Production of chemicals new to the host organism; and 5. Modification of cell properties. Over 100 examples of cellular and metabolic engineering are summarized. Several molecular biological, analytical chemistry, and mathematical and computational tools of relevance to cellular and metabolic engineering are reviewed. The importance of host selection and gene selection is emphasized. Finally, some future directions and emerging areas are presented.
代谢工程被定义为利用重组DNA技术对中间代谢进行有目的的修饰。细胞工程是一个更具包容性的术语,被定义为使用相同技术对细胞特性进行有目的的修饰。细胞工程和代谢工程的实例分为五类:1. 提高宿主生物体已产生的化学品的产量;2. 扩大生长和产物形成的底物范围;3. 添加新的分解代谢活性以降解有毒化学品;4. 生产宿主生物体中不存在的化学品;5. 修饰细胞特性。总结了100多个细胞工程和代谢工程的实例。综述了一些与细胞工程和代谢工程相关的分子生物学、分析化学以及数学和计算工具。强调了宿主选择和基因选择的重要性。最后,介绍了一些未来的方向和新兴领域。