Schlitt Thomas, Brazma Alvis
British Antarctic Survey, Natural Environment Research Council, High Cross, Madingley Road, Cambridge CB3 0ET, UK.
FEBS Lett. 2005 Mar 21;579(8):1859-66. doi: 10.1016/j.febslet.2005.01.073.
Approaches to modelling gene regulation networks can be categorized, according to increasing detail, as network parts lists, network topology models, network control logic models, or dynamic models. We discuss the current state of the art for each of these approaches. There is a gap between the parts list and topology models on one hand, and control logic and dynamic models on the other hand. The first two classes of models have reached a genome-wide scale, while for the other model classes high throughput technologies are yet to make a major impact.
根据详细程度的增加,基因调控网络的建模方法可分为网络元件列表、网络拓扑模型、网络控制逻辑模型或动态模型。我们讨论了这些方法中每一种的当前技术水平。一方面,元件列表和拓扑模型之间存在差距,另一方面,控制逻辑和动态模型之间也存在差距。前两类模型已达到全基因组规模,而对于其他模型类别,高通量技术尚未产生重大影响。