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Coordinated control of Notch/Delta signalling and cell cycle progression drives lateral inhibition-mediated tissue patterning

机译:Notch / Delta信号和细胞周期进程的协调控制驱动横向抑制介导的组织模式

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摘要

Coordinating cell differentiation with cell growth and division is crucial for the successful development, homeostasis and regeneration of multicellular tissues. Here, we use bristle patterning in the fly notum as a model system to explore the regulatory and functional coupling of cell cycle progression and cell fate decision-making. The pattern of bristles and intervening epithelial cells (ECs) becomes established through Notch-mediated lateral inhibition during G2 phase of the cell cycle, as neighbouring cells physically interact with each other via lateral contacts and/or basal protrusions. Since Notch signalling controls cell division timing downstream of Cdc25, ECs in lateral contact with a Delta-expressing cell experience higher levels of Notch signalling and divide first, followed by more distant neighbours, and lastly Delta-expressing cells. Conversely, mitotic entry and cell division makes ECs refractory to lateral inhibition signalling, fixing their fate. Using a combination of experiments and computational modelling, we show that this reciprocal relationship between Notch signalling and cell cycle progression acts like a developmental clock, providing a delimited window of time during which cells decide their fate, ensuring efficient and orderly bristle patterning.
机译:使细胞分化与细胞生长和分裂相协调对于多细胞组织的成功发育,体内稳态和再生至关重要。在这里,我们使用蝇notum中的鬃毛图案作为模型系统来探索细胞周期进程与细胞命运决策的调控和功能耦合。硬毛和中间上皮细胞(EC)的模式在细胞周期的G2阶段通过Notch介导的侧向抑制而得以建立,因为相邻细胞通过侧向接触和/或基底突起彼此物理相互作用。由于Notch信号控制Cdc25下游的细胞分裂时间,因此与表达Delta的细胞侧向接触的EC会经历更高水平的Notch信号并首先分裂,然后是更远的邻居,最后是表达Delta的细胞。相反,有丝分裂进入和细胞分裂使EC对侧向抑制信号不敏感,从而固定了它们的命运。使用实验和计算建模的组合,我们表明,Notch信号和细胞周期进程之间的这种相互关系就像发育时钟一样,提供了确定细胞命运的有限时间窗口,从而确保了有效且有序的刷毛图案。

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