Aggregates of stem cells can break symmetry and self-organize into embryo-like structures with complex morphologies and gene expression patterns. Mechanisms including reaction-diffusion Turing patterns and cell sorting have been proposed to explain symmetry breaking but distinguishing between these candidate mechanisms of self-organization requires identifying which early asymmetries evolve into subsequent tissue patterns and cell fates. Here we use synthetic 'signal-recording' gene circuits to trace the evolution of signalling patterns in gastruloids, three-dimensional stem cell aggregates that form an anterior-posterior axis and structures resembling the mammalian primitive streak and tailbud. We find that cell sorting rearranges patchy domains of Wnt activity into a single pole that defines the gastruloid anterior-posterior axis. We also trace the emergence of Wnt domains to earlier heterogeneity in Nodal activity even before Wnt activity is detectable. Our study defines a mechanism through which aggregates of stem cells can form a patterning axis even in the absence of external spatial cues.
Recording morphogen signals reveals mechanisms underlying gastruloid symmetry breaking.
记录形态发生素信号揭示了原肠胚对称性破缺的潜在机制
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作者:McNamara Harold M, Solley Sabrina C, Adamson Britt, Chan Michelle M, Toettcher Jared E
| 期刊: | Nature Cell Biology | 影响因子: | 19.100 |
| 时间: | 2024 | 起止号: | 2024 Nov;26(11):1832-1844 |
| doi: | 10.1038/s41556-024-01521-9 | 研究方向: | 信号转导 |
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