Department of Biological Sciences, Osaka University, 1-1 Machikaneyama, Toyonaka, Osaka 560-0043, Japan.
Department of Biosystems Science, Kyoto University, 53 Shogoin Kawahara-cho, Sakyo-ku, Kyoto 606-8507, Japan.
Development. 2021 Sep 15;148(18). doi: 10.1242/dev.198507. Epub 2021 Apr 29.
Proper organ development often requires nuclei to move to a specific position within the cell. To determine how nuclear positioning affects left-right (LR) development in the Drosophila anterior midgut (AMG), we developed a surface-modeling method to measure and describe nuclear behavior at stages 13-14, captured in three-dimensional time-lapse movies. We describe the distinctive positioning and a novel collective nuclear behavior by which nuclei align LR symmetrically along the anterior-posterior axis in the visceral muscles that overlie the midgut and are responsible for the LR-asymmetric development of this organ. Wnt4 signaling is crucial for the collective behavior and proper positioning of the nuclei, as are myosin II and the LINC complex, without which the nuclei fail to align LR symmetrically. The LR-symmetric positioning of the nuclei is important for the subsequent LR-asymmetric development of the AMG. We propose that the bilaterally symmetrical positioning of these nuclei may be mechanically coupled with subsequent LR-asymmetric morphogenesis.
器官的正常发育通常需要细胞核在细胞内移动到特定位置。为了确定核定位如何影响果蝇前中肠(AMG)的左右(LR)发育,我们开发了一种表面建模方法来测量和描述在三维延时电影中捕获的 13-14 阶段的核行为。我们描述了独特的定位和一种新的核集体行为,通过这种行为,核沿前-后轴在覆盖中肠的内脏肌肉中 LR 对称排列,负责该器官的 LR 不对称发育。Wnt4 信号对核的集体行为和正确定位至关重要,肌球蛋白 II 和 LINC 复合物也是如此,没有它们,核就不能 LR 对称排列。核的 LR 对称定位对于 AMG 的随后的 LR 不对称发育很重要。我们提出,这些核的双侧对称定位可能与随后的 LR 不对称形态发生在机械上偶联。