Department of Cell and Systems Biology, University of Toronto, Toronto, Ontario, Canada.
Institute of Biomedical Engineering, University of Toronto, Toronto, Ontario, Canada.
J Cell Biol. 2022 Jul 4;221(7). doi: 10.1083/jcb.202108076. Epub 2022 May 19.
Epithelial cells often leave their tissue context and ingress to form new cell types or acquire migratory ability to move to distant sites during development and tumor progression. Cells lose their apical membrane and epithelial adherens junctions during ingression. However, how factors that organize apical-basal polarity contribute to ingression is unknown. Here, we show that the dynamic regulation of the apical Crumbs polarity complex is crucial for normal neural stem cell ingression. Crumbs endocytosis and recycling allow ingression to occur in a normal timeframe. During early ingression, Crumbs and its complex partner the RhoGEF Cysts support myosin and apical constriction to ensure robust ingression dynamics. During late ingression, the E3-ubiquitin ligase Neuralized facilitates the disassembly of the Crumbs complex and the rapid endocytic removal of the apical cell domain. Our findings reveal a mechanism integrating cell fate, apical polarity, endocytosis, vesicle trafficking, and actomyosin contractility to promote cell ingression, a fundamental morphogenetic process observed in animal development and cancer.
上皮细胞经常离开其组织环境并侵入以形成新的细胞类型,或在发育和肿瘤进展过程中获得迁移能力以移动到远处的部位。细胞在侵入时会失去顶端膜和上皮细胞黏附连接。然而,组织顶端 - 基底极性的因素如何有助于侵入尚不清楚。在这里,我们表明顶端 Crumbs 极性复合物的动态调节对于正常神经干细胞侵入至关重要。Crumbs 的内吞作用和循环允许在正常的时间范围内发生侵入。在早期侵入期间,Crumbs 及其复合物伙伴 RhoGEF Cysts 支持肌球蛋白和顶端收缩以确保强大的侵入动力学。在晚期侵入期间,E3 泛素连接酶 Neuralized 促进 Crumbs 复合物的解体和顶端细胞结构域的快速内吞去除。我们的发现揭示了一种机制,该机制将细胞命运、顶端极性、内吞作用、囊泡运输和肌动球蛋白收缩性整合在一起,以促进细胞侵入,这是动物发育和癌症中观察到的基本形态发生过程。