Comlekoglu Tien, Dzamba Bette J, Pacheco Gustavo G, Shook David R, Sego T J, Glazier James A, Peirce Shayn M, DeSimone Douglas W
bioRxiv. 2023 Oct 17:2023.10.16.562601. doi: 10.1101/2023.10.16.562601.
Collectively migrating Xenopus mesendoderm cells are arranged into leader and follower rows with distinct adhesive properties and protrusive behaviors. In vivo, leading row mesendoderm cells extend polarized protrusions and migrate along a fibronectin matrix assembled by blastocoel roof cells. Traction stresses generated at the leading row result in the pulling forward of attached follower row cells. Mesendoderm explants removed from embryos provide an experimentally tractable system for characterizing collective cell movements and behaviors, yet the cellular mechanisms responsible for this mode of migration remain elusive. We introduce an agent-based computational model of migrating mesendoderm in the Cellular-Potts computational framework to investigate the relative contributions of multiple parameters specific to the behaviors of leader and follower row cells. Sensitivity analyses identify cohesotaxis, tissue geometry, and cell intercalation as key parameters affecting the migration velocity of collectively migrating cells. The model predicts that cohesotaxis and tissue geometry in combination promote cooperative migration of leader cells resulting in increased migration velocity of the collective. Radial intercalation of cells towards the substrate is an additional mechanism to increase migratory speed of the tissue.
We present a novel Cellular-Potts model of collective cell migration to investigate the relative roles of cohesotaxis, tissue geometry, and cell intercalation on migration velocity of mesendoderm.
集体迁移的非洲爪蟾中内胚层细胞排列成具有不同粘附特性和突出行为的领先行和跟随行。在体内,领先行的中内胚层细胞延伸极化突起,并沿着由囊胚腔顶细胞组装的纤连蛋白基质迁移。领先行产生的牵引应力导致附着的跟随行细胞向前拉动。从胚胎中取出的中内胚层外植体为表征集体细胞运动和行为提供了一个易于实验操作的系统,然而,负责这种迁移模式的细胞机制仍然难以捉摸。我们在细胞Potts计算框架中引入了一个基于代理的迁移中内胚层计算模型,以研究特定于领先行和跟随行细胞行为的多个参数的相对贡献。敏感性分析确定趋粘性、组织几何形状和细胞插入是影响集体迁移细胞迁移速度的关键参数。该模型预测,趋粘性和组织几何形状共同促进领先细胞的协同迁移,从而提高集体的迁移速度。细胞向基质的径向插入是提高组织迁移速度的另一种机制。
我们提出了一种新型的细胞Potts集体细胞迁移模型,以研究趋粘性、组织几何形状和细胞插入对中内胚层迁移速度的相对作用。