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代谢设计:如何将活细胞工程改造以达到所需的代谢物浓度和通量。

Metabolic design: how to engineer a living cell to desired metabolite concentrations and fluxes.

作者信息

Kholodenko B N, Cascante M, Hoek J B, Westerhoff H V, Schwaber J

机构信息

Department of Pathology, Anatomy and Cell Biology, Thomas Jefferson University, 1020 Locust St., Philadelphia, Pennsylvania 19107, USA.

出版信息

Biotechnol Bioeng. 1998 Jul 20;59(2):239-47. doi: 10.1002/(sici)1097-0290(19980720)59:2<239::aid-bit11>3.0.co;2-9.

Abstract

A biotechnological aim of genetic engineering is to increase the intracellular concentration or secretion of valuable compounds, while making the other concentrations and fluxes optimal for viability and productivity. Efforts to accomplish this based on over-expression of the enzyme, catalyzing the so-called "rate-limiting step," have not been successful. Here we develop a method to determine the enzyme concentrations that are required to achieve such an aim. This method is called Metabolic Design Analysis and is based on the perturbation method and the modular ("top-down") approach-formalisms that were first developed for the analysis of biochemical regulation such as, Metabolic Control Analysis. Contrary to earlier methods, the desired alterations of cellular metabolism need not be small or confined to a single metabolite or flux. The limits to the alterations of fluxes and metabolite concentrations are identified. To employ Metabolic Design Analysis, only limited kinetic information concerning the pathway enzymes is needed.

摘要

基因工程的一个生物技术目标是提高有价值化合物的细胞内浓度或分泌量,同时使其他浓度和通量对于细胞活力和生产力而言达到最佳状态。基于催化所谓“限速步骤”的酶的过表达来实现这一目标的努力尚未成功。在此,我们开发了一种方法来确定实现该目标所需的酶浓度。这种方法称为代谢设计分析,它基于微扰法和模块化(“自上而下”)方法——这些形式体系最初是为分析生化调节(如代谢控制分析)而开发的。与早期方法不同,细胞代谢的期望改变不必很小或局限于单一代谢物或通量。通量和代谢物浓度改变的限度得以确定。要应用代谢设计分析,仅需要关于途径酶的有限动力学信息。

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