Department of Cell, Developmental and Regenerative Biology, Icahn School of Medicine at Mount Sinai, New York, NY 10029, USA.
Biol Open. 2021 Jul 15;10(7). doi: 10.1242/bio.058761. Epub 2021 Jul 19.
Coordinated polarization of cells in the tissue plane, known as planar cell polarity (PCP), is associated with a signaling pathway critical for the control of morphogenetic processes. Although the segregation of PCP components to opposite cell borders is believed to play a critical role in this pathway, whether PCP derives from egg polarity or preexistent long-range gradient, or forms in response to a localized cue, remains a challenging question. Here we investigate the Xenopus neural plate, a tissue that has been previously shown to exhibit PCP. By imaging Vangl2 and Prickle3, we show that PCP is progressively acquired in the neural plate and requires a signal from the posterior region of the embryo. Tissue transplantations indicated that PCP is triggered in the neural plate by a planar cue from the dorsal blastopore lip. The PCP cue did not depend on the orientation of the graft and was distinct from neural inducers. These observations suggest that neuroectodermal PCP is not instructed by a preexisting molecular gradient but induced by a signal from the dorsal blastopore lip.
细胞在组织平面上的协调极化,称为平面细胞极性(PCP),与控制形态发生过程的信号通路有关。尽管PCP 成分被分隔到相对的细胞边界被认为在该途径中起关键作用,但 PCP 是来自卵子极性还是预先存在的长程梯度,或者是对局部线索的响应而形成,仍然是一个具有挑战性的问题。在这里,我们研究了 Xenopus 神经板,该组织以前被证明表现出 PCP。通过对 Vangl2 和 Prickle3 的成像,我们表明 PCP 在神经板中逐渐获得,并需要来自胚胎后区域的信号。组织移植表明,神经板中的 PCP 是由来自背侧胚孔唇的平面线索触发的。PCP 线索不依赖于移植物的方向,并且与神经诱导物不同。这些观察结果表明,神经外胚层的 PCP 不是由预先存在的分子梯度指示的,而是由来自背侧胚孔唇的信号诱导的。