论文标题

随机波动促进了Notch-Delta信号通路中细胞的有序模式形成

Stochastic fluctuations promote ordered pattern formation of cells in the Notch-Delta signaling pathway

论文作者

Galbraith, Madeline, Bocci, Federico, Onuchic, José N.

论文摘要

Notch-Delta信号通路介导了与许多调节过程有关的细胞分化,包括组织中的时空图案,通过促进相邻细胞之间的交替细胞命运。在多细胞水平上,这种“横向抑制”原理导致发件人和接收器单元的棋盘格模式。众所周知,随机性调节细胞命运的规范,但对于多细胞模式形成过程中细胞水平的随机波动如何传播。在这里,我们在两种不同的噪声类型的存在下对Notch -Delta途径中的随机波动进行建模,即用于多细胞系统。结果表明,中间波动减少了障碍,并指导多细胞晶格像更多的棋盘一样。通过进一步分析细胞命运过渡事件,我们证明了中间噪声幅度提供了足够的扰动,以促进无序模式的“校对”,并导致细胞切换到其正确的有序状态。相反,高噪声可以覆盖来自相邻细胞的环境信号,并导致有序和无序模式之间的切换。因此,与自旋玻璃系统类似,中间噪声水平使多币凹槽系统可以逃脱沮丧的模式并放松较低的能量棋盘板图案,而在大噪声水平下,系统无法找到这个吸引人的有序基础。

The Notch-Delta signaling pathway mediates cell differentiation implicated in many regulatory processes including spatiotemporal patterning in tissues by promoting alternate cell fates between neighboring cells. At the multicellular level, this "lateral inhibition" principle leads to checkerboard patterns of Sender and Receiver cells. While it is well known that stochasticity modulates cell fate specification, little is known about how stochastic fluctuations at the cellular level propagate during multicell pattern formation. Here, we model stochastic fluctuations in the Notch-Delta pathway in the presence of two different noise types - shot and white - for a multicell system. The results show that intermediate fluctuations reduce disorder and guide the multicell lattice toward more checkerboard like patterns. By further analyzing cell fate transition events, we demonstrate that intermediate noise amplitudes provide enough perturbation to facilitate "proofreading" of disordered patterns and cause cells to switch to their correct ordered state. Conversely, high noise can override environmental signals coming from neighboring cells and lead to switching between ordered and disordered patterns. Therefore, in analogy with spin glass systems, intermediate noise levels allow the multicell Notch system to escape frustrated patterns and relax towards the lower energy checkerboard pattern while at large noise levels the system is unable to find this ordered base of attraction.

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