Department of Developmental and Stem Cell Biology, Institut Pasteur, Paris, CNRS, UMR 3738, France.
Department of Developmental and Stem Cell Biology, Institut Pasteur, Paris, CNRS, UMR 3738, France.
Curr Biol. 2019 Aug 5;29(15):R762-R774. doi: 10.1016/j.cub.2019.06.030.
Cell competition is a widespread process leading to the expansion of one cell population through the elimination and replacement of another. A large number of genetic alterations can lead to either competitive elimination of the mutated population or expansion of the mutated cells through the elimination of the neighbouring cells. Several processes have been proposed to participate in the preferential elimination of one cell population, including competition for limiting extracellular pro-survival factors, communication through direct cell-cell contact, or differential sensitivity to mechanical stress. Recent quantitative studies of cell competition have also demonstrated the strong impact of the shape of the interfaces between the two populations. Here, we discuss the direct and indirect contribution of mechanical cues to cell competition, where they act either as modulators of competitive interactions or as direct drivers of cell elimination. We first discuss how mechanics can regulate contact-dependent and diffusion-based competition by modulating the shape of the interface between the two populations. We then describe the direct contribution of mechanical stress to cell elimination and competition for space. Finally, we discuss how mechanical feedback also influences compensatory growth and triggers preferential expansion of one population.
细胞竞争是一种广泛存在的过程,通过消除和替换另一个细胞群体来导致一个细胞群体的扩张。大量的遗传改变可以导致突变群体的竞争消除,或者通过消除相邻细胞来扩张突变细胞。已经提出了几种过程来参与优先消除一个细胞群体,包括竞争有限的细胞外生存促进因子,通过直接细胞-细胞接触进行通讯,或对机械应激的差异敏感性。最近对细胞竞争的定量研究也表明了两个群体之间界面形状的强烈影响。在这里,我们讨论了机械线索对细胞竞争的直接和间接贡献,其中它们既可以作为竞争相互作用的调节剂,也可以作为细胞消除的直接驱动因素。我们首先讨论了力学如何通过调节两个群体之间界面的形状来调节基于接触的和扩散的竞争。然后,我们描述了机械应激对细胞消除和空间竞争的直接贡献。最后,我们讨论了机械反馈如何影响代偿性生长并触发一个群体的优先扩张。