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细胞生长与基因表达的相互依赖性:起源与后果。

Interdependence of cell growth and gene expression: origins and consequences.

机构信息

Center for Theoretical Biological Physics, Department of Physics, University of California, San Diego, La Jolla, CA 92093, USA.

出版信息

Science. 2010 Nov 19;330(6007):1099-102. doi: 10.1126/science.1192588.

Abstract

In bacteria, the rate of cell proliferation and the level of gene expression are intimately intertwined. Elucidating these relations is important both for understanding the physiological functions of endogenous genetic circuits and for designing robust synthetic systems. We describe a phenomenological study that reveals intrinsic constraints governing the allocation of resources toward protein synthesis and other aspects of cell growth. A theory incorporating these constraints can accurately predict how cell proliferation and gene expression affect one another, quantitatively accounting for the effect of translation-inhibiting antibiotics on gene expression and the effect of gratuitous protein expression on cell growth. The use of such empirical relations, analogous to phenomenological laws, may facilitate our understanding and manipulation of complex biological systems before underlying regulatory circuits are elucidated.

摘要

在细菌中,细胞增殖的速度和基因表达的水平是紧密交织在一起的。阐明这些关系对于理解内源性遗传回路的生理功能和设计稳健的合成系统都非常重要。我们描述了一项现象学研究,揭示了控制资源分配到蛋白质合成和细胞生长其他方面的内在约束。一个包含这些约束的理论可以准确地预测细胞增殖和基因表达如何相互影响,定量地解释了翻译抑制抗生素对基因表达的影响以及无偿蛋白质表达对细胞生长的影响。在阐明潜在的调控回路之前,使用这种类似于唯象规律的经验关系可能有助于我们理解和操纵复杂的生物系统。

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