沿着信号梯度的模式形成是由细胞群的活跃滴滴行为驱动的
Hugh Z Ford1,2, Giulia L Celora1,3, Elizabeth R Westbrook1,2
1Institute for the Physics of Living Systems, University College London, United Kingdom.
概括
狄氏细胞群聚并通过"音乐椅子"机制进行分化. 蜂群前进后面的细胞脱落,引发分化,因为它们不再感觉到营养梯度.
科学领域:
- 发展生物学 发展生物学
- 细胞动力学细胞动力学
- 生物物理学的生物物理.
背景情况:
- 细胞组织依赖于细胞外信号梯度.
- 了解细胞在3D形态发生过程中的行为与不断变化的相互作用至关重要.
- 狄基托斯蒂 (Dictyostelium discoideum) 细胞跟踪营养梯度以保持不分化.
研究的目的:
- 为了研究Dictyostelium细胞如何在3D形态发生过程中对营养梯度做出反应.
- 阐明由人口动态触发的细胞分化的机制.
主要方法:
- 信号,单细胞和群体动态的同时照明表成像.
- 对活跃的滴状细胞群的物理模型的开发.
- 单个细胞的3D跟踪以验证模型预测.
主要成果:
- 狄氏细胞形成群,向营养梯度迁移.
- 进步的群体在后面存储细胞团,开始分化.
- 一个物理模型通过临界群体大小和渐变传感损失来解释块脱落.
- 预测群体内部的旋运动通过单细胞追踪得到了验证.
结论:
- 细胞群表现出活跃的流体行为,类似于活跃的液滴.
- 一个新的"音乐椅子"决策过程控制了基于细胞位置的增殖与分化.
- 这种机制强调了人口内部的空间动态如何推动发展过渡.
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