Department of Physiology, Development and Neuroscience, University of Cambridge, Cambridge, UK.
Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, CA, USA.
EMBO J. 2022 Dec 15;41(24):e111021. doi: 10.15252/embj.2022111021. Epub 2022 Aug 22.
Individual cells within de novo polarising tubes and cavities must integrate their forming apical domains into a centralised apical membrane initiation site (AMIS). This is necessary to enable organised lumen formation within multi-cellular tissue. Despite the well-documented importance of cell division in localising the AMIS, we have found a division-independent mechanism of AMIS localisation that relies instead on Cadherin-mediated cell-cell adhesion. Our study of de novo polarising mouse embryonic stem cells (mESCs) cultured in 3D suggests that cell-cell adhesion localises apical proteins such as PAR-6 to a centralised AMIS. Unexpectedly, we also found that mESC clusters lacking functional E-cadherin still formed a lumen-like cavity in the absence of AMIS localisation but did so at a later stage of development via a "closure" mechanism, instead of via hollowing. This work suggests that there are two, interrelated mechanisms of apical polarity localisation: cell adhesion and cell division. Alignment of these mechanisms in space allows for redundancy in the system and ensures the development of a coherent epithelial structure within a growing organ.
新形成的极化管和腔体内的单个细胞必须将其形成的顶端域整合到中央化的顶端膜起始位点 (AMIS) 中。这对于在多细胞组织中形成有组织的腔至关重要。尽管细胞分裂在局部化 AMIS 方面具有很好的记录,但我们发现了一种不依赖于分裂的 AMIS 定位机制,该机制依赖于 Cadherin 介导的细胞间粘附。我们对在 3D 中培养的新形成的极化的小鼠胚胎干细胞 (mESC) 的研究表明,细胞间粘附将 PAR-6 等顶端蛋白定位到中央化的 AMIS。出乎意料的是,我们还发现,缺乏功能性 E-cadherin 的 mESC 簇仍然在没有 AMIS 定位的情况下形成了类似腔的腔,但通过“闭合”机制而不是通过空心化来实现,这发生在发育的后期阶段。这项工作表明,顶端极性定位存在两种相互关联的机制:细胞粘附和细胞分裂。这些机制在空间上的对齐允许系统中的冗余,并确保在生长的器官内形成连贯的上皮结构。