Division of Molecular and Life Sciences, Pohang University of Science and Technology, Nam-gu, Pohang, Kyungbuk, Republic of Korea.
Dev Biol. 2011 Feb 15;350(2):441-50. doi: 10.1016/j.ydbio.2010.12.012. Epub 2010 Dec 11.
In Xenopus gastrulation, the involuting mesodermal and non-involuting ectodermal cells remain separated from each other, undergoing convergent extension. Here, we show that Eph-ephrin signaling is crucial for the tissue separation and convergence during gastrulation. The loss of EphA4 function results in aberrant gastrulation movements, which are due to selective inhibition of tissue constriction and separation. At the cellular levels, knockdown of EphA4 impairs polarization and migratory activity of gastrulating cells but not specification of their fates. Importantly, rescue experiments demonstrate that EphA4 controls tissue separation via RhoA GTPase in parallel to Fz7 and PAPC signaling. In addition, we show that EphA4 and its putative ligand, ephrin-A1 are expressed in a complementary manner in the involuting mesodermal and non-involuting ectodermal layers of early gastrulae, respectively. Depletion of ephrin-A1 also abrogates tissue separation behaviors. Therefore, these results suggest that Eph receptor and its ephrin ligand might mediate repulsive interaction for tissue separation and convergence during early Xenopus gastrulation movements.
在非洲爪蟾原肠胚形成过程中,内卷的中胚层细胞和未内卷的外胚层细胞彼此分离,同时进行细胞的汇聚延伸运动。在这里,我们发现 Eph-ephrin 信号通路对于原肠胚形成过程中的组织分离和汇聚至关重要。EphA4 功能的丧失导致原肠胚形成运动异常,这是由于组织收缩和分离的选择性抑制所致。在细胞水平上,EphA4 的敲低会损害原肠胚形成细胞的极化和迁移活性,但不会影响其命运的特化。重要的是,挽救实验表明,EphA4 通过 RhoA GTP 酶平行于 Fz7 和 PAPC 信号通路来控制组织分离。此外,我们还发现 EphA4 及其假定配体 ephrin-A1 在早期原肠胚的内卷中胚层和未内卷的外胚层中分别以互补的方式表达。ephrin-A1 的耗竭也会破坏组织分离行为。因此,这些结果表明,Eph 受体及其配体 ephrin-A1 可能在非洲爪蟾早期原肠胚形成运动过程中通过细胞间的排斥相互作用介导组织分离和汇聚。