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细胞代谢的网络组织:单糖相互转化

Network organization of cell metabolism: monosaccharide interconversion.

作者信息

Nuño J C, Sánchez-Valdenebro I, Pérez-Iratxeta C, Meléndez-Hevia E, Montero F

机构信息

Departamento de Bioquímica y Biologiá Molecular I, Facultad de CC. Químicas, Universidad Computense de Madrid, E-28040 Madrid, Spain.

出版信息

Biochem J. 1997 May 15;324 ( Pt 1)(Pt 1):103-11. doi: 10.1042/bj3240103.

Abstract

The structural properties of carbohydrate metabolism are being studied. The present contribution focuses mainly on those processes involving the transfer of carbon fragments among sugars. It is shown how enzymatic activities fix the way the system self-organizes stoichiometrically at the steady state. It is proven that there exists a specific correspondence between the set of all possible enzymic activities, the activity set, and the set of stoichiometrically compatible flux distributions through the pathway. On the one hand, there are enzymic activities that do not allow a stoichiometrically feasible coupling at the steady state of the reactions involved in the conversion. On the other hand, there are enzymic activities that are related to one or more flux distributions at the steady state (i.e. with one or several rate vectors respectively). For this latter group, it can be demonstrated that the structure of the system depends on other non-structural factors, such as boundary constraints and the kinetic parameters. As a consequence, it is suggested that this kind of metabolic process must be viewed as a complex reaction network instead of a sequential number of steps. Some implications of these derivations are illustrated for the particular conversion of CO2 --> C3. General remarks are also discussed within the framework of network models of cell metabolism.

摘要

碳水化合物代谢的结构特性正在被研究。目前的研究主要集中在那些涉及糖之间碳片段转移的过程。研究表明了酶活性是如何在稳态下以化学计量方式确定系统自我组织的方式。已证明在所有可能的酶活性集合(活性集)与通过该途径的化学计量兼容通量分布集合之间存在特定对应关系。一方面,存在一些酶活性,它们在转化所涉及反应的稳态下不允许化学计量可行的耦合。另一方面,存在一些酶活性与稳态下的一个或多个通量分布相关(即分别与一个或几个速率向量相关)。对于后一组,可以证明系统的结构取决于其他非结构因素,如边界约束和动力学参数。因此,建议将这种代谢过程视为一个复杂的反应网络,而不是一系列连续的步骤。这些推导的一些含义针对CO2→C3的特定转化进行了说明。还在细胞代谢网络模型的框架内讨论了一般性评论。

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