Krishna Sandeep, Orosz László, Sneppen Kim, Adhya Sankar, Semsey Szabolcs
Center for Models of Life, Niels Bohr Institute, Copenhagen, Denmark.
J Mol Biol. 2009 Aug 28;391(4):671-8. doi: 10.1016/j.jmb.2009.06.043. Epub 2009 Jun 23.
Transcription of many genes is regulated by combinations of multiple signals. In Escherichia coli, combinatorial control is typical in the case of operons related to utilization of different sugars in the absence of glucose. To understand regulation of the transport and metabolic pathways in the galactose system, we measured activities of the six gal regulon promoters simultaneously, using an in vitro transcription system containing purified components. Input functions were computed on the basis of the experimental measurements. We observed four different shapes of input functions. From the results, we can conclude that the structure of the regulatory network is insufficient for the determination of signal integration. It is the actual structure of the promoter and regulatory region, the mechanism of transcription regulation, and the interplay between transcription factors that shape the input function to be suitable for adaptation.
许多基因的转录受多种信号组合的调控。在大肠杆菌中,对于与在无葡萄糖情况下利用不同糖类相关的操纵子而言,组合控制很典型。为了理解半乳糖系统中转运和代谢途径的调控,我们使用包含纯化成分的体外转录系统,同时测量了六个半乳糖操纵子调控区启动子的活性。基于实验测量结果计算输入函数。我们观察到四种不同形状的输入函数。从结果可以得出结论,调控网络的结构不足以确定信号整合。是启动子和调控区的实际结构、转录调控机制以及转录因子之间的相互作用塑造了适合适应性的输入函数。