Systems Biology Ireland, University College Dublin, Belfield, Dublin 4, Ireland.
Nat Rev Mol Cell Biol. 2010 Jun;11(6):414-26. doi: 10.1038/nrm2901.
Although we have amassed extensive catalogues of signalling network components, our understanding of the spatiotemporal control of emergent network structures has lagged behind. Dynamic behaviour is starting to be explored throughout the genome, but analysis of spatial behaviours is still confined to individual proteins. The challenge is to reveal how cells integrate temporal and spatial information to determine specific biological functions. Key findings are the discovery of molecular signalling machines such as Ras nanoclusters, spatial activity gradients and flexible network circuitries that involve transcriptional feedback. They reveal design principles of spatiotemporal organization that are crucial for network function and cell fate decisions.
尽管我们已经积累了大量的信号网络组件目录,但我们对于新兴网络结构的时空控制的理解却落后了。动态行为开始在整个基因组中被探索,但对空间行为的分析仍然局限于单个蛋白质。挑战在于揭示细胞如何整合时间和空间信息来确定特定的生物学功能。主要发现是发现了分子信号机器,如 Ras 纳米簇、空间活性梯度和涉及转录反馈的灵活网络电路,它们揭示了时空组织的设计原则,这些原则对于网络功能和细胞命运决策至关重要。