作者
Ahmet Ay, Jack Holland, Adriana Sperlea, Gnanapackiam Sheela Devakanmalai, Stephan Knierer, Sebastian Sangervasi, Angel Stevenson, Ertuğrul M Özbudak
发表日期
2014/11/1
期刊
Development
卷号
141
期号
21
页码范围
4158-4167
出版商
The Company of Biologists
简介
The vertebrate segmentation clock is a gene expression oscillator controlling rhythmic segmentation of the vertebral column during embryonic development. The period of oscillations becomes longer as cells are displaced along the posterior to anterior axis, which results in traveling waves of clock gene expression sweeping in the unsegmented tissue. Although various hypotheses necessitating the inclusion of additional regulatory genes into the core clock network at different spatial locations have been proposed, the mechanism underlying traveling waves has remained elusive. Here, we combined molecular-level computational modeling and quantitative experimentation to solve this puzzle. Our model predicts the existence of an increasing gradient of gene expression time delays along the posterior to anterior direction to recapitulate spatiotemporal profiles of the traveling segmentation clock waves in different …
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