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指数生长的生物体中RNA和蛋白质的诱导动力学。

Induction kinetics of RNA and proteins in exponentially growing organisms.

作者信息

Harayama S

机构信息

Department of Medical Biochemistry, University Medical Center, Geneva, Switzerland.

出版信息

Biochem Biophys Res Commun. 1991 Oct 31;180(2):913-9. doi: 10.1016/s0006-291x(05)81152-0.

Abstract

A mathematical model of the induction kinetics of RNAs and proteins in exponentially growing organisms is derived, and the cellular concentrations of the induced macromolecules at a given time after induction are related to three parameters: the fraction of the synthesis of these macromolecules in total synthesis, the half life of the inducible macromolecules, and the generation time of the organisms. The model predicts that the concentrations of the inducible macromolecules reach one half of the maximum induction level within one generation time after the onset of the induction. The model also predicts that induction curves of proteins are parabolic when their mRNAs are short-lived, but sigmoid when they are stable. Observed induction curves of beta-galactosidase in Escherichia coli cells fit in the theoretical induction curves.

摘要

推导了指数生长生物体中RNA和蛋白质诱导动力学的数学模型,诱导后给定时间诱导大分子的细胞浓度与三个参数相关:这些大分子合成在总合成中的比例、可诱导大分子的半衰期以及生物体的世代时间。该模型预测,诱导开始后一代时间内,可诱导大分子的浓度达到最大诱导水平的一半。该模型还预测,当蛋白质的mRNA寿命短时,其诱导曲线为抛物线形,而当mRNA稳定时,诱导曲线为S形。在大肠杆菌细胞中观察到的β-半乳糖苷酶诱导曲线与理论诱导曲线相符。

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