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脱氧核糖核苷酸代谢及其与DNA合成关系的研究。超级计算机模拟与模型系统分析。

A study of deoxyribonucleotide metabolism and its relation to DNA synthesis. Supercomputer simulation and model-system analysis.

作者信息

Heinmets F, Leary R H

机构信息

San Diego Supercomputer Center, CA 92186.

出版信息

Cell Biophys. 1991 Jun;18(3):263-77. doi: 10.1007/BF02989818.

Abstract

A model system (1) was established to analyze purine and pyrimidine metabolism. This system has been expanded to include macrosimulation of DNA synthesis and the study of its regulation by terminal deoxynucleoside triphosphates (dNTPs) via a complex set of interactions. Computer experiments reveal that our model exhibits adequate and reasonable sensitivity in terms of dNTP pool levels and rates of DNA synthesis when inputs to the system are varied. These simulation experiments reveal that in order to achieve maximum DNA synthesis (in terms of purine metabolism), a proper balance is required in guanine and adenine input into this metabolic system. Excessive inputs will become inhibitory to DNA synthesis. In addition, studies are carried out on rates of DNA synthesis when various parameters are changed quantitatively. The current system is formulated by 110 differential equations.

摘要

建立了一个模型系统(1)来分析嘌呤和嘧啶代谢。该系统已扩展到包括DNA合成的宏观模拟,以及通过一组复杂的相互作用研究其受末端脱氧核苷三磷酸(dNTPs)调控的情况。计算机实验表明,当系统的输入发生变化时,我们的模型在dNTP库水平和DNA合成速率方面表现出足够且合理的敏感性。这些模拟实验表明,为了实现最大的DNA合成(就嘌呤代谢而言),需要在鸟嘌呤和腺嘌呤输入到这个代谢系统中保持适当的平衡。过多的输入将抑制DNA合成。此外,还对各种参数定量变化时的DNA合成速率进行了研究。当前系统由110个微分方程构成。

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