Howard Hughes Medical Institute and Division of Basic Science, Fred Hutchinson Cancer Research Center, B2-152, 1100 Fairview Avenue North, Seattle, WA 98109, USA.
Curr Biol. 2011 Jan 11;21(1):79-86. doi: 10.1016/j.cub.2010.12.005. Epub 2010 Dec 23.
How control of subcellular events in single cells determines morphogenesis on the scale of the tissue is largely unresolved. The stereotyped cross-midline mitoses of progenitors in the zebrafish neural keel provide a unique experimental paradigm for defining the role and control of single-cell orientation for tissue-level morphogenesis in vivo. We show here that the coordinated orientation of individual progenitor cell division in the neural keel is the cellular determinant required for morphogenesis into a neural tube epithelium with a single straight lumen. We find that Scribble is required for oriented cell division and that its function in this process is independent of canonical apicobasal and planar polarity pathways. We identify a role for Scribble in controlling clustering of α-catenin foci in dividing progenitors. Loss of either Scrib or N-cadherin results in abnormally oriented mitoses, reduced cross-midline cell divisions, and similar neural tube defects. We propose that Scribble-dependent nascent cell-cell adhesion clusters between neuroepithelial progenitors contribute to define orientation of their cell division. Finally, our data demonstrate that while oriented mitoses of individual cells determine neural tube architecture, the tissue can in turn feed back on its constituent cells to define their polarization and cell division orientation to ensure robust tissue morphogenesis.
细胞内亚细胞事件的控制如何决定组织水平的形态发生在很大程度上尚未解决。斑马鱼神经龙骨中祖细胞的典型跨中线有丝分裂为定义单个细胞方向在体内组织水平形态发生中的作用和控制提供了一个独特的实验范例。我们在这里表明,神经龙骨中单个祖细胞分裂的协调定向是形成具有单个直管腔的神经管上皮所需的细胞决定因素。我们发现 Scribble 是定向细胞分裂所必需的,并且其在该过程中的功能独立于经典的顶底和平面极性途径。我们确定了 Scribble 在控制分裂祖细胞中 α-连环蛋白焦点聚类中的作用。Scribble 或 N-钙粘蛋白的缺失导致有丝分裂方向异常、中线交叉细胞分裂减少和类似的神经管缺陷。我们提出,神经上皮祖细胞之间依赖 Scribble 的新生细胞-细胞粘附簇有助于确定其细胞分裂的方向。最后,我们的数据表明,虽然单个细胞的定向有丝分裂决定了神经管结构,但组织反过来可以反馈其组成细胞以确定它们的极化和细胞分裂方向,以确保组织形态发生的稳健性。