Self-organization, such as the emergence of a pattern from a homogenous state, is a fascinating property of biological systems. Early limb bud outgrowth and patterning in mice are controlled by a robust and self-regulatory signaling system, and initiation of the periodic digit-interdigit pattern appears to be under the control of a self-regulatory Turing system. Previous studies established the requirement of WNT and BMP signaling for both early limb bud and digit-interdigit morphogenesis, but the molecular changes underlying the transition from early limb bud signaling to the digit-interdigit patterning system remained unknown. Here, we have used small molecule inhibitors to rapidly but transiently block WNT signaling to identify the early transcriptional targets that are altered during disruption and recovery of limb bud and digit development. Together, this study highlights the overarching role of WNT signaling in controlling early limb bud outgrowth and patterning, and the establishment of the periodic digit-interdigit pattern. Finally, the transient WNT signaling disruption approach reveals the plasticity and robustness of these self-organizing limb bud- and digit-patterning systems.
WNT signaling coordinately controls mouse limb bud outgrowth and establishment of the digit-interdigit pattern.
WNT信号协同控制小鼠肢芽生长和指间模式的建立
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作者:Malkmus Jonas, Morabito Angela, Lopez-Delisle Lucille, Avino-Esteban Laura, Mayran Alexandre, Zuniga Aimee, Sharpe James, Zeller Rolf, Sheth Rushikesh
| 期刊: | Development | 影响因子: | 3.600 |
| 时间: | 2025 | 起止号: | 2025 Jun 1; 152(11):dev204606 |
| doi: | 10.1242/dev.204606 | 种属: | Mouse |
| 研究方向: | 信号转导 | ||
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