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Toward systematic metabolic engineering based on the analysis of metabolic regulation by the integration of different levels of information

机译:通过整合不同水平信息的代谢调控分析,实现系统代谢工程

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Recent metabolic engineering were reviewed for the production of useful metabolites. Although much attention has been paid to metabolic engineering with some practical success, without profound insight into metabolic regulation, the modification of pathways based on the knockout of corresponding genes and/or amplification by plasmids does not necessarily lead to a significant improvement in cell growth and/or the production of specific metabolites. Although much information is available on the genetic regulation, biochemistry, and physiology of cellular metabolism, we are still far from understanding their overall regulation. Metabolic flux distribution is the manifestation of regulation at the enzyme level of the concentrations of intracellular metabolites. Moreover, proteins (including enzymes) are encoded by the corresponding metabolic pathway genes, which are under control of global regulators that respond to the environment. It is strongly desired that different levels of (omics) information be integrated by comparison of the data from different mutants and/or the different cultural environments using a systems biology approach. In particular, the roles of global regulators are quite important for metabolic regulation.
机译:综述了最近的代谢工程以产生有用的代谢产物。尽管已在代谢工程学上获得了许多关注,并获得了一些实际的成功,但是对代谢调节没有深入的了解,基于相应基因的敲除和/或质粒扩增的途径修饰并不一定会导致细胞生长和生长的显着改善。 /或特定代谢产物的产生。尽管可以获得有关细胞代谢的遗传调控,生物化学和生理学的许多信息,但我们仍远未了解它们的整体调控。代谢通量分布是细胞内代谢物浓度的酶水平调节的表现。此外,蛋白质(包括酶)由相应的代谢途径基因编码,这些基因在对环境有反应的全局调节剂的控制下。强烈希望通过使用系统生物学方法比较来自不同突变体和/或不同文化环境的数据来整合不同级别的(组学)信息。特别地,全局调节剂的作用对于代谢调节非常重要。

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