Laboratoire Adaptation et Pathogénie des Microorganismes, Institut Jean Roget, Université Joseph Fourier, Campus Santé, Domaine de la Merci, BP170, 38042 Grenoble Cedex 9, France.
J Bacteriol. 2011 Jan;193(2):429-40. doi: 10.1128/JB.01341-10. Epub 2010 Nov 19.
The phenotypic plasticity of global regulatory networks provides bacteria with rapid acclimation to a wide range of environmental conditions, while genetic changes in those networks provide additional flexibility as bacteria evolve across long time scales. We previously identified mutations in the global regulator-encoding gene fis that enhanced organismal fitness during a long-term evolution experiment with Escherichia coli. To gain insight into the effects of these mutations, we produced two-dimensional protein gels with strains carrying different fis alleles, including a beneficial evolved allele and one with an in-frame deletion. We found that Fis controls the expression of the major porin-encoding gene ompF in the E. coli B-derived ancestral strain used in the evolution experiment, a relationship that has not been described before. We further showed that this regulatory connection evolved over two different time scales, perhaps explaining why it was not observed before. On the longer time scale, we showed that this regulation of ompF by Fis is absent from the more widely studied K-12 strain and thus is specific to the B strain. On a shorter time scale, this regulatory linkage was lost during 20,000 generations of experimental evolution of the B strain. Finally, we mapped the Fis binding sites in the ompF regulatory region, and we present a hypothetical model of ompF expression that includes its other known regulators.
全局调控网络的表型可塑性使细菌能够迅速适应广泛的环境条件,而这些网络中的遗传变化则为细菌在长时间尺度上的进化提供了额外的灵活性。我们之前在大肠杆菌的长期进化实验中发现了编码全局调控因子 fis 的基因突变,这些突变增强了生物体的适应性。为了深入了解这些突变的影响,我们用携带不同 fis 等位基因的菌株制作了二维蛋白质凝胶,包括有利的进化等位基因和一个框架内缺失的等位基因。我们发现 Fis 控制着在进化实验中使用的大肠杆菌 B 衍生祖先菌株中主要孔蛋白编码基因 ompF 的表达,这是以前没有描述过的关系。我们进一步表明,这种调控连接在两个不同的时间尺度上进化,这也许可以解释为什么以前没有观察到。在较长的时间尺度上,我们表明,这种由 Fis 调控的 ompF 在更广泛研究的 K-12 菌株中不存在,因此是 B 菌株所特有的。在较短的时间尺度上,这种调控联系在 B 菌株的 20000 代实验进化中丢失了。最后,我们绘制了 ompF 调控区域中 Fis 的结合位点,并提出了一个包含其其他已知调控因子的 ompF 表达的假设模型。