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原代细胞钙信号在 Xenopus 原肠胚形成过程中调节中胚层片状迁移的前缘。

Intracellular calcium signal at the leading edge regulates mesodermal sheet migration during Xenopus gastrulation.

机构信息

Department of Developmental Biology, National Institute for Basic Biology, 38 Nishigonaka, Myodaiji, Okazaki, Aichi, 444-8585, Japan.

Department of Basic Biology, School of Life Science, The Graduate University of Advanced Studies (SOKENDAI), 38 Nishigonaka, Myodaiji, Okazaki, Aichi, 444-8585, Japan.

出版信息

Sci Rep. 2018 Feb 5;8(1):2433. doi: 10.1038/s41598-018-20747-w.

Abstract

During the gastrulation stage in animal embryogenesis, the cells leading the axial mesoderm migrate toward the anterior side of the embryo, vigorously extending cell protrusions such as lamellipodia. It is thought that the leading cells sense gradients of chemoattractants emanating from the ectodermal cells and translate them to initiate and maintain the cell movements necessary for gastrulation. However, it is unclear how the extracellular information is converted to the intracellular chemical reactions that lead to motion. Here we demonstrated that intracellular Ca levels in the protrusion-forming leading cells are markedly higher than those of the following cells and the axial mesoderm cells. We also showed that inhibiting the intracellular Ca significantly retarded the gastrulation cell movements, while increasing the intracellular Ca with an ionophore enhanced the migration. We further found that the ionophore treatment increased the active form of the small GTPase Rac1 in these cells. Our results suggest that transient intracellular Ca signals play an essential role in the active cell migration during gastrulation.

摘要

在动物胚胎发生的原肠胚形成阶段,引导中胚层轴的细胞向胚胎的前侧迁移,强烈地伸出片状伪足等细胞突起。人们认为,引导细胞感知来自外胚层细胞的趋化因子梯度,并将其转化为启动和维持原肠胚形成所需的细胞运动。然而,细胞外信息如何转化为导致运动的细胞内化学反应尚不清楚。在这里,我们证明了突起形成的引导细胞中的细胞内 Ca 水平明显高于后续细胞和中胚层轴细胞。我们还表明,抑制细胞内 Ca 显著延缓了原肠胚形成细胞的运动,而用离子载体增加细胞内 Ca 则增强了迁移。我们进一步发现,离子载体处理增加了这些细胞中小 GTP 酶 Rac1 的活性形式。我们的结果表明,短暂的细胞内 Ca 信号在原肠胚形成过程中的活性细胞迁移中起关键作用。

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