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完整生化系统的不同理论比较。I. 酶-酶相互作用与生化系统理论。

A comparison of variant theories of intact biochemical systems. I. Enzyme-enzyme interactions and biochemical systems theory.

作者信息

Sorribas A, Savageau M A

出版信息

Math Biosci. 1989 Jun;94(2):161-93. doi: 10.1016/0025-5564(89)90064-3.

Abstract

The need for a well-structured theory of intact biochemical systems becomes increasingly evident as one attempts to integrate the vast knowledge of individual molecular constituents, which has been expanding for several decades. In recent years, several apparently different approaches to the development of such a theory have been proposed. Unfortunately, the resulting theories have not been distinguished from each other, and this has led to considerable confusion with numerous duplications and rediscoveries. Detailed comparisons and critical tests of alternative theories are badly needed to reverse these unfortunate developments. In this paper we (1) characterize a specific system involving enzyme-enzyme interactions for reference in comparing alternative theories, and (2) analyze the reference system by applying the explicit S-system variant within biochemical systems theory (BST), which represents a fundamental framework based upon the power-law formalism and includes several variants. The results provide the first complete and rigorous numerical analysis within the power-law formalism of a specific biochemical system and further evidence for the accuracy of the explicit S-system variant within BST. This theory is shown to represent enzyme-enzyme interactions in a systematically structured fashion that facilitates analysis of complex biochemical systems in which these interactions play a prominent role. This representation also captures the essential character of the underlying nonlinear processes over a wide range of variation (on average 20-fold) in the independent variables of the system. In the companion paper in this issue the same reference system is analyzed by other variants within BST as well as by two additional theories within the same power-law formalism--flux-oriented and metabolic control theories. The results show how all these theories are related to one another.

摘要

随着人们试图整合几十年来不断扩展的关于各个分子成分的海量知识,对于完整生化系统的结构完善的理论的需求变得愈发明显。近年来,已经提出了几种看似不同的构建此类理论的方法。不幸的是,由此产生的理论之间并未区分开来,这导致了大量重复和重新发现的情况,造成了相当大的混乱。迫切需要对替代理论进行详细比较和严格检验,以扭转这些不利的发展趋势。在本文中,我们(1)描述了一个涉及酶 - 酶相互作用的特定系统,以供比较替代理论时参考,并且(2)通过应用生化系统理论(BST)中的显式S - 系统变体来分析该参考系统,该理论代表了基于幂律形式主义的基本框架,并且包含几个变体。这些结果提供了在幂律形式主义内对特定生化系统的首次完整且严格的数值分析,并进一步证明了BST中显式S - 系统变体的准确性。该理论以一种系统结构化的方式表示酶 - 酶相互作用,这有助于分析这些相互作用起显著作用的复杂生化系统。这种表示还捕捉了系统自变量在广泛变化范围(平均20倍)内潜在非线性过程的本质特征。在本期的配套论文中,同一参考系统通过BST中的其他变体以及同一幂律形式主义内的另外两种理论——通量导向理论和代谢控制理论进行了分析。结果展示了所有这些理论是如何相互关联的。

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