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基因调控进化中的权衡与最优化。

Tradeoffs and optimality in the evolution of gene regulation.

机构信息

AMOLF Institute, Science Park 104, 1098 XG Amsterdam, The Netherlands.

出版信息

Cell. 2011 Aug 5;146(3):462-70. doi: 10.1016/j.cell.2011.06.035. Epub 2011 Jul 28.

Abstract

Cellular regulation is believed to evolve in response to environmental variability. However, this has been difficult to test directly. Here, we show that a gene regulation system evolves to the optimal regulatory response when challenged with variable environments. We engineered a genetic module subject to regulation by the lac repressor (LacI) in E. coli, whose expression is beneficial in one environmental condition and detrimental in another. Measured tradeoffs in fitness between environments predict the competition between regulatory phenotypes. We show that regulatory evolution in adverse environments is delayed at specific boundaries in the phenotype space of the regulatory LacI protein. Once this constraint is relieved by mutation, adaptation proceeds toward the optimum, yielding LacI with an altered allosteric mechanism that enables an opposite response to its regulatory ligand IPTG. Our results indicate that regulatory evolution can be understood in terms of tradeoff optimization theory.

摘要

细胞调节被认为是为了应对环境变化而进化的。然而,这一直难以直接进行测试。在这里,我们展示了当面临可变环境时,一个基因调节系统会进化到最佳的调节反应。我们设计了一个受 lac 阻遏物(LacI)调节的遗传模块,该模块在大肠杆菌中表达,在一种环境条件下是有益的,而在另一种环境条件下是有害的。在不同环境之间测量的适应性权衡可以预测调节表型之间的竞争。我们表明,在不利环境中的调节进化在 LacI 调节蛋白的表型空间中的特定边界处被延迟。一旦这种限制通过突变得到缓解,适应性就会朝着最优方向发展,产生具有改变的变构机制的 LacI,使其对其调节配体 IPTG 产生相反的反应。我们的结果表明,调节进化可以根据权衡优化理论来理解。

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