Belmonte Julio M, Swat Maciej H, Glazier James A
Biocomplexity Institute and Department of Physics, Indiana University Bloomington, Bloomington, Indiana, United States of America.
Biocomplexity Institute and Department of Intelligent Systems Engineering, Indiana University Bloomington, Bloomington, Indiana, United States of America.
PLoS Comput Biol. 2016 Jun 20;12(6):e1004952. doi: 10.1371/journal.pcbi.1004952. eCollection 2016 Jun.
In convergent-extension (CE), a planar-polarized epithelial tissue elongates (extends) in-plane in one direction while shortening (converging) in the perpendicular in-plane direction, with the cells both elongating and intercalating along the converging axis. CE occurs during the development of most multicellular organisms. Current CE models assume cell or tissue asymmetry, but neglect the preferential filopodial activity along the convergent axis observed in many tissues. We propose a cell-based CE model based on asymmetric filopodial tension forces between cells and investigate how cell-level filopodial interactions drive tissue-level CE. The final tissue geometry depends on the balance between external rounding forces and cell-intercalation traction. Filopodial-tension CE is robust to relatively high levels of planar cell polarity misalignment and to the presence of non-active cells. Addition of a simple mechanical feedback between cells fully rescues and even improves CE of tissues with high levels of polarity misalignments. Our model extends easily to three dimensions, with either one converging and two extending axes, or two converging and one extending axes, producing distinct tissue morphologies, as observed in vivo.
在汇聚延伸(CE)过程中,平面极化上皮组织在一个方向上沿平面内伸长(延伸),同时在垂直的平面内方向上缩短(汇聚),细胞沿汇聚轴伸长并插入。CE发生在大多数多细胞生物的发育过程中。当前的CE模型假定细胞或组织不对称,但忽略了在许多组织中观察到的沿汇聚轴的优先丝状伪足活动。我们提出了一种基于细胞间不对称丝状伪足张力的基于细胞的CE模型,并研究细胞水平的丝状伪足相互作用如何驱动组织水平的CE。最终的组织几何形状取决于外部圆形力和细胞插入牵引力之间的平衡。丝状伪足张力CE对相对高水平的平面细胞极性错位和非活性细胞的存在具有鲁棒性。在细胞之间添加简单的机械反馈可以完全挽救甚至改善具有高水平极性错位的组织的CE。我们的模型可以轻松扩展到三维,具有一个汇聚轴和两个延伸轴,或者两个汇聚轴和一个延伸轴,产生如在体内观察到的不同组织形态。