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细胞极性决定因子Dlg1 通过促进组织尺度的机械协调促进上皮内陷。

The cell polarity determinant Dlg1 facilitates epithelial invagination by promoting tissue-scale mechanical coordination.

机构信息

Dartmouth College, Department of Biological Sciences, Hanover, NH 03755, USA.

出版信息

Development. 2022 Mar 15;149(6). doi: 10.1242/dev.200468. Epub 2022 Mar 18.

Abstract

Epithelial folding mediated by apical constriction serves as a fundamental mechanism to convert flat epithelial sheets into multilayered structures. It remains unknown whether additional mechanical inputs are required for apical constriction-mediated folding. Using Drosophila mesoderm invagination as a model, we identified an important role for the non-constricting, lateral mesodermal cells adjacent to the constriction domain ('flanking cells') in facilitating epithelial folding. We found that depletion of the basolateral determinant Dlg1 disrupts the transition between apical constriction and invagination without affecting the rate of apical constriction. Strikingly, the observed delay in invagination is associated with ineffective apical myosin contractions in the flanking cells that lead to overstretching of their apical domain. The defects in the flanking cells impede ventral-directed movement of the lateral ectoderm, suggesting reduced mechanical coupling between tissues. Specifically disrupting the flanking cells in wild-type embryos by laser ablation or optogenetic depletion of cortical actin is sufficient to delay the apical constriction-to-invagination transition. Our findings indicate that effective mesoderm invagination requires intact flanking cells and suggest a role for tissue-scale mechanical coupling during epithelial folding.

摘要

上皮折叠由顶端收缩介导,是将扁平上皮层转化为多层结构的基本机制。目前尚不清楚顶端收缩介导的折叠是否需要额外的机械输入。使用果蝇中胚层内陷作为模型,我们发现相邻于收缩区域的非收缩性、侧向中胚层细胞(“侧翼细胞”)在促进上皮折叠中起着重要作用。我们发现,基底外侧决定因子 Dlg1 的耗竭会破坏顶端收缩和内陷之间的转变,而不影响顶端收缩的速度。引人注目的是,观察到的内陷延迟与侧翼细胞中无效的顶端肌球蛋白收缩有关,导致其顶端区域过度拉伸。侧翼细胞的缺陷阻碍了侧外胚层向腹侧的运动,表明组织间的机械耦合力降低。具体来说,通过激光消融或光遗传学耗竭皮质肌动蛋白特异性地破坏野生型胚胎中的侧翼细胞足以延迟顶端收缩到内陷的转变。我们的发现表明有效的中胚层内陷需要完整的侧翼细胞,并表明在上皮折叠过程中组织尺度的机械耦合力起着作用。

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