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Cellular information transfer regarded from a stoichiometry and control analysis perspective

机译:从化学计量和控制分析的角度看细胞信息传递

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Metabolic control analysis (MCA) allows one to formalize important aspects of information processing in living cells. For example, information processing via multi-level enzyme cascades can be quantified in terms of the response coefficient of a cellular target to a signal. In many situations, control and response coefficients cannot be determined exactly for all enzymes involved, owing to difficulties in 'observing' all enzymes experimentally. Here, we review a number of qualitative approaches that were developed to cope with such situations. The usefulness of the concept of null-space of the stoichiometry matrix for analysing the structure of intracellular signaling networks is discussed. II is shown that signal transduction operates very efficiently when the network structure is such that the null-space matrix can be block-diagonalized (which may or may not imply that the network consists of several disconnected parts) and some enzymes have low elasticities to their substrates. (C) 2000 Elsevier Science Ireland Ltd. All rights reserved. [References: 35]
机译:代谢控制分析(MCA)使人们可以形式化活细胞中信息处理的重要方面。例如,可以根据细胞靶标对信号的响应系数来量化通过多级酶级联反应进行的信息处理。在许多情况下,由于难以“实验”观察所有酶,因此无法准确确定所有酶的控制系数和响应系数。在这里,我们回顾了为解决这种情况而开发的许多定性方法。讨论了化学计量矩阵零空间的概念对分析细胞内信号网络结构的有用性。 II显示了当网络结构使得空空间矩阵可以被块对角线化(这可能或可能不意味着网络由几个不连续的部分组成)并且某些酶对其弹性低时,信号转导非常有效地运行。基材。 (C)2000 Elsevier Science Ireland Ltd.保留所有权利。 [参考:35]

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