Developmental Dynamics Laboratory, The Francis Crick Institute, 1 Midland Road, NW1 1AT London, UK; Gatsby Computational Neuroscience Unit, University College London, 25 Howland Street, W1T 4JG London, UK.
Developmental Dynamics Laboratory, The Francis Crick Institute, 1 Midland Road, NW1 1AT London, UK.
Cell Syst. 2023 Nov 15;14(11):940-952.e11. doi: 10.1016/j.cels.2023.10.004.
The generation of distinct cell types in developing tissues depends on establishing spatial patterns of gene expression. Often, this is directed by spatially graded chemical signals-known as morphogens. In the "French Flag model," morphogen concentration instructs cells to acquire specific fates. How this mechanism produces timely and organized cell-fate decisions, despite the presence of changing morphogen levels, molecular noise, and individual variability, is unclear. Moreover, feedback is present at various levels in developing tissues, breaking the link between morphogen concentration, signaling activity, and position. Here, we develop an alternative framework using optimal control theory to tackle the problem of morphogen-driven patterning: intracellular signaling is derived as the control strategy that guides cells to the correct fate while minimizing a combination of signaling levels and time. This approach recovers experimentally observed properties of patterning strategies and offers insight into design principles that produce timely, precise, and reproducible morphogen patterning.
在发育组织中产生不同类型的细胞依赖于建立基因表达的空间模式。通常,这是由空间梯度的化学信号(称为形态发生素)来指导的。在“法国国旗模型”中,形态发生素浓度指示细胞获得特定的命运。尽管存在不断变化的形态发生素水平、分子噪声和个体变异性,但这种机制如何产生及时和有组织的细胞命运决定尚不清楚。此外,反馈存在于发育组织的各个层次,打破了形态发生素浓度、信号活性和位置之间的联系。在这里,我们使用最优控制理论来开发一个替代框架来解决形态发生素驱动的模式形成问题:细胞内信号转导是作为控制策略被推导出来的,该策略引导细胞走向正确的命运,同时最小化信号水平和时间的组合。这种方法恢复了模式形成策略的实验观察特性,并提供了关于产生及时、精确和可重复的形态发生素模式形成的设计原则的见解。