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通过一连串 Erk 活性波控制成骨细胞的再生。

Control of osteoblast regeneration by a train of Erk activity waves.

机构信息

Regeneration Next, Duke University, Durham, NC, USA.

Department of Cell Biology, Duke University Medical Center, Durham, NC, USA.

出版信息

Nature. 2021 Feb;590(7844):129-133. doi: 10.1038/s41586-020-03085-8. Epub 2021 Jan 6.

Abstract

Regeneration is a complex chain of events that restores a tissue to its original size and shape. The tissue-wide coordination of cellular dynamics that is needed for proper morphogenesis is challenged by the large dimensions of regenerating body parts. Feedback mechanisms in biochemical pathways can provide effective communication across great distances, but how they might regulate growth during tissue regeneration is unresolved. Here we report that rhythmic travelling waves of Erk activity control the growth of bone in time and space in regenerating zebrafish scales, millimetre-sized discs of protective body armour. We find that waves of Erk activity travel across the osteoblast population as expanding concentric rings that are broadcast from a central source, inducing ring-like patterns of tissue growth. Using a combination of theoretical and experimental analyses, we show that Erk activity propagates as excitable trigger waves that are able to traverse the entire scale in approximately two days and that the frequency of wave generation controls the rate of scale regeneration. Furthermore, the periodic induction of synchronous, tissue-wide activation of Erk in place of travelling waves impairs tissue growth, which indicates that wave-distributed Erk activation is key to regeneration. Our findings reveal trigger waves as a regulatory strategy to coordinate cell behaviour and instruct tissue form during regeneration.

摘要

再生是一个复杂的事件链,它将组织恢复到原来的大小和形状。对于适当的形态发生,需要组织范围内的细胞动力学协调,但再生体节的大尺寸挑战了这一点。生化途径中的反馈机制可以在远距离提供有效的通信,但它们如何在组织再生过程中调节生长仍未解决。在这里,我们报告说,Erk 活性的节律性传播波控制着再生斑马鱼鳞片(毫米大小的保护身体盔甲盘)中骨骼的时空生长。我们发现,Erk 活性波作为扩展的同心环穿过成骨细胞群体传播,这些环从中央源传播,诱导组织生长的环形模式。通过理论和实验分析的结合,我们表明 Erk 活性作为可兴奋的触发波传播,能够在大约两天内穿过整个鳞片,并且波的生成频率控制着鳞片再生的速度。此外,周期性地诱导 Erk 的同步、全组织激活而不是传播波会损害组织生长,这表明波分布的 Erk 激活是再生的关键。我们的发现揭示了触发波作为一种调节策略,用于在再生过程中协调细胞行为和指导组织形态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/566d/7864885/f6d06923f7fd/nihms-1648068-f0005.jpg

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