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组织-组织相互作用触发的钙升高是爪蟾原肠胚形成过程中细胞极化所必需的。

Tissue-tissue interaction-triggered calcium elevation is required for cell polarization during Xenopus gastrulation.

机构信息

Department of Developmental Biology, National Institute for Basic Biology, Okazaki, Aichi, Japan.

出版信息

PLoS One. 2010 Feb 2;5(2):e8897. doi: 10.1371/journal.pone.0008897.

Abstract

The establishment of cell polarity is crucial for embryonic cells to acquire their proper morphologies and functions, because cell alignment and intracellular events are coordinated in tissues during embryogenesis according to the cell polarity. Although much is known about the molecules involved in cell polarization, the direct trigger of the process remains largely obscure. We previously demonstrated that the tissue boundary between the chordamesoderm and lateral mesoderm of Xenopus laevis is important for chordamesodermal cell polarity. Here, we examined the intracellular calcium dynamics during boundary formation between two different tissues. In a combination culture of nodal-induced chordamesodermal explants and a heterogeneous tissue, such as ectoderm or lateral mesoderm, the chordamesodermal cells near the boundary frequently displayed intracellular calcium elevation; this frequency was significantly less when homogeneous explants were used. Inhibition of the intracellular calcium elevation blocked cell polarization in the chordamesodermal explants. We also observed frequent calcium waves near the boundary of the dorsal marginal zone (DMZ) dissected from an early gastrula-stage embryo. Optical sectioning revealed that where heterogeneous explants touched, the chordamesodermal surface formed a wedge with the narrow end tucked under the heterogeneous explant. No such configuration was seen between homogeneous explants. When physical force was exerted against a chordamesodermal explant with a glass needle at an angle similar to that created in the explant, or migrating chordamesodermal cells crawled beneath a silicone block, intracellular calcium elevation was frequent and cell polarization was induced. Finally, we demonstrated that a purinergic receptor, which is implicated in mechano-sensing, is required for such frequent calcium elevation in chordamesoderm and for cell polarization. This study raises the possibility that tissue-tissue interaction generates mechanical forces through cell-cell contact that initiates coordinated cell polarization through a transient increase in intracellular calcium.

摘要

细胞极性的建立对于胚胎细胞获得适当的形态和功能至关重要,因为在胚胎发生过程中,根据细胞极性,组织中的细胞排列和细胞内事件是协调一致的。尽管人们对参与细胞极化的分子有了很多了解,但该过程的直接触发因素在很大程度上仍不清楚。我们之前证明,非洲爪蟾的脊索中胚层和侧中胚层之间的组织边界对于脊索中胚层细胞的极性很重要。在这里,我们研究了两种不同组织之间边界形成过程中的细胞内钙动力学。在脊索中胚层诱导外植体和异质组织(如外胚层或侧中胚层)的组合培养中,边界附近的脊索中胚层细胞经常显示细胞内钙升高;当使用同质外植体时,这种频率显著降低。细胞内钙升高的抑制阻断了脊索中胚层外植体的细胞极化。我们还观察到从早期原肠胚期胚胎分离的背缘区(DMZ)边界附近经常发生钙波。光学切片显示,在异质外植体接触的地方,脊索中胚层表面形成一个楔形,窄端塞在异质外植体下面。在同质外植体之间没有看到这种结构。当用玻璃针以类似于在外植体中形成的角度对角地施加力作用于脊索中胚层外植体,或者迁移的脊索中胚层细胞在硅酮块下爬行时,细胞内钙升高频繁,并且诱导细胞极化。最后,我们证明了一种嘌呤能受体,它参与机械感觉,对于脊索中胚层中的这种频繁钙升高和细胞极化是必需的。这项研究提出了一种可能性,即组织-组织相互作用通过细胞-细胞接触产生机械力,通过细胞内钙的短暂增加启动协调的细胞极化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a65/2814847/7988551879f3/pone.0008897.g001.jpg

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