Veglio A, Gamba A, Nicodemi M, Bussolino F, Serini G
Department of Oncological Sciences and Division of Vascular Biology, Institute for Cancer Research and Treatment, School of Medicine, University of Torino, 10060 Candiolo, Torino, Italy.
Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Sep;80(3 Pt 1):031919. doi: 10.1103/PhysRevE.80.031919. Epub 2009 Sep 29.
In multicellular organisms, epithelial cells form layers separating compartments responsible for different physiological functions. At the early stage of epithelial layer formation, each cell of an aggregate defines an inner and an outer side by breaking the symmetry of its initial state, in a process known as epithelial polarization. By integrating recent biochemical and biophysical data with stochastic simulations of the relevant reaction-diffusion system, we provide evidence that epithelial cell polarization is a chemical phase-separation process induced by a local bistability in the signaling network at the level of the cell membrane. The early symmetry breaking event triggering phase separation is induced by adhesion-dependent mechanical forces localized in the point of convergence of cell surfaces when a threshold number of confluent cells is reached. The generality of the emerging phase-separation scenario is likely common to many processes of cell polarity formation.
在多细胞生物中,上皮细胞形成分隔不同生理功能区室的层。在上皮层形成的早期阶段,聚集体中的每个细胞通过打破其初始状态的对称性来定义内侧和外侧,这一过程称为上皮极化。通过将最近的生化和生物物理数据与相关反应扩散系统的随机模拟相结合,我们提供证据表明上皮细胞极化是由细胞膜水平信号网络中的局部双稳性诱导的化学相分离过程。当达到汇合细胞的阈值数量时,触发相分离的早期对称性破缺事件是由位于细胞表面汇聚点的粘附依赖性机械力诱导的。新出现的相分离情况的普遍性可能在许多细胞极性形成过程中都很常见。