Wallingford J B, Harland R M
Department of Molecular and Cell Biology, 401 Barker Hall, University of California, Berkeley, CA 94720, USA.
Development. 2001 Jul;128(13):2581-92. doi: 10.1242/dev.128.13.2581.
During amphibian development, non-canonical Wnt signals regulate the polarity of intercalating dorsal mesoderm cells during convergent extension. Cells of the overlying posterior neural ectoderm engage in similar morphogenetic cell movements. Important differences have been discerned in the cell behaviors associated with neural and mesodermal cell intercalation, raising the possibility that different mechanisms may control intercalations in these two tissues. In this report, targeted expression of mutants of Xenopus Dishevelled (Xdsh) to neural or mesodermal tissues elicited different defects that were consistent with inhibition of either neural or mesodermal convergent extension. Expression of mutant Xdsh also inhibited elongation of neural tissues in vitro in Keller sandwich explants and in vivo in neural plate grafts. Targeted expression of other Wnt signaling antagonists also inhibited neural convergent extension in whole embryos. In situ hybridization indicated that these defects were not due to changes in cell fate. Examination of embryonic phenotypes after inhibition of convergent extension in different tissues reveals a primary role for mesodermal convergent extension in axial elongation, and a role for neural convergent extension as an equalizing force to produce a straight axis. This study demonstrates that non-canonical Wnt signaling is a common mechanism controlling convergent extension in two very different tissues in the Xenopus embryo and may reflect a general conservation of control mechanisms in vertebrate convergent extension.
在两栖动物发育过程中,非经典Wnt信号在汇聚延伸过程中调节插入背侧中胚层细胞的极性。覆盖在后侧神经外胚层的细胞会进行类似的形态发生细胞运动。在与神经和中胚层细胞插入相关的细胞行为中已发现重要差异,这增加了不同机制可能控制这两种组织中细胞插入的可能性。在本报告中,将非洲爪蟾蓬乱蛋白(Xdsh)突变体靶向表达于神经或中胚层组织会引发不同缺陷,这些缺陷与神经或中胚层汇聚延伸的抑制一致。突变体Xdsh的表达在体外的凯勒三明治外植体和体内的神经板移植中也抑制了神经组织的伸长。其他Wnt信号拮抗剂的靶向表达也抑制了全胚胎中的神经汇聚延伸。原位杂交表明这些缺陷并非由于细胞命运的改变。在不同组织中抑制汇聚延伸后对胚胎表型的检查揭示了中胚层汇聚延伸在轴向伸长中的主要作用,以及神经汇聚延伸作为产生直轴的平衡力的作用。这项研究表明,非经典Wnt信号是控制非洲爪蟾胚胎中两个非常不同组织中汇聚延伸的共同机制,并且可能反映了脊椎动物汇聚延伸控制机制的普遍保守性。