CoMPLEX, University College London, London, UK.
J R Soc Interface. 2011 Jun 6;8(59):787-98. doi: 10.1098/rsif.2010.0488. Epub 2010 Nov 17.
Lateral inhibition provides the basis for a self-organizing patterning system in which distinct cell states emerge from an otherwise uniform field of cells. The development of the microchaete bristle pattern on the notum of the fruitfly, Drosophila melanogaster, has long served as a popular model of this process. We recently showed that this bristle pattern depends upon a population of dynamic, basal actin-based filopodia, which span multiple cell diameters. These protrusions establish transient signalling contacts between non-neighbouring cells, generating a type of structured noise that helps to yield a well-ordered and spaced pattern of bristles. Here, we develop a general model of protrusion-based patterning to analyse the role of noise in this process. Using a simple asynchronous cellular automata rule-based model we show that this type of structured noise drives the gradual refinement of lateral inhibition-mediated patterning, as the system moves towards a stable configuration in which cells expressing the inhibitory signal are near-optimally packed. By analysing the effects of introducing thresholds required for signal detection in this model of lateral inhibition, our study shows how filopodia-mediated cell-cell communication can generate complex patterns of spots and stripes, which, in the presence of signalling noise, align themselves across a patterning field. Thus, intermittent protrusion-based signalling has the potential to yield robust self-organizing tissue-wide patterns without the need to invoke diffusion-mediated signalling.
侧向抑制为自组织模式系统提供了基础,在此系统中,不同的细胞状态从原本均匀的细胞场中出现。果蝇背部小毛刷图案的发育长期以来一直是该过程的流行模型。我们最近表明,这种刷毛图案取决于一群动态的、基于基底肌动蛋白的丝状伪足,这些伪足跨越多个细胞直径。这些突起在非相邻细胞之间建立瞬时信号接触,产生一种结构噪声,有助于产生整齐有序的刷毛图案。在这里,我们开发了一种基于突起的模式化的通用模型,以分析噪声在这个过程中的作用。使用一个简单的异步细胞自动机基于规则的模型,我们表明这种结构噪声驱动侧向抑制介导的模式逐渐细化,因为系统朝着细胞表达抑制信号的细胞接近最佳包装的稳定配置移动。通过分析在这个侧向抑制模型中引入信号检测所需的阈值的影响,我们的研究表明丝状伪足介导的细胞间通讯如何产生复杂的斑点和条纹图案,这些图案在存在信号噪声的情况下,在图案化场中对齐。因此,间歇性基于突起的信号传递有可能产生稳健的自组织全组织图案,而无需调用扩散介导的信号传递。