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Planar cell polarity signaling coordinates oriented cell division and cell rearrangement in clonally expanding growth plate cartilage

机译:平面细胞极性信号协调克隆扩展生长板软骨中定向的细胞分裂和细胞重排

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摘要

Both oriented cell divisions and cell rearrangements are critical for proper embryogenesis and organogenesis. However, little is known about how these two cellular events are integrated. Here we examine the linkage between these processes in chick limb cartilage. By combining retroviral-based multicolor clonal analysis with live imaging, the results show that single chondrocyte precursors can generate both single-column and multi-column clones through oriented division followed by cell rearrangements. Focusing on single column formation, we show that this stereotypical tissue architecture is established by a pivot-like process between sister cells. After mediolateral cell division, N-cadherin is enriched in the post-cleavage furrow; then one cell pivots around the other, resulting in stacking into a column. Perturbation analyses demonstrate that planar cell polarity signaling enables cells to pivot in the direction of limb elongation via this N-cadherin-mediated coupling. Our work provides new insights into the mechanisms generating appropriate tissue architecture of limb skeleton.
机译:定向的细胞分裂和细胞重排对于正确的胚胎发生和器官发生都至关重要。然而,关于这两个细胞事件是如何整合的知之甚少。在这里,我们检查了鸡肢软骨中这些过程之间的联系。通过将基于逆转录病毒的多色克隆分析与实时成像相结合,结果表明,单个软骨细胞前体可以通过定向分裂然后进行细胞重排而生成单列和多列克隆。着眼于单列形成,我们表明这种定型组织结构是通过姐妹细胞之间的枢轴样过程建立的。在中外侧细胞分裂后,N-钙黏着蛋白富集在切割后的沟中;然后一个单元围绕另一个旋转,导致堆叠成一列。扰动分析表明,平面细胞极性信号通过这种N-钙黏着蛋白介导的偶联作用使细胞能够在肢体伸长的方向上枢转。我们的工作为生成适当的肢体骨骼组织结构的机制提供了新见解。

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