Müller Werner, Frank Uri, Teo Regina, Mokady Ofer, Guette Christina, Plickert Günter
Inst. Zoology, Univ. Heidelberg, Germany.
Int J Dev Biol. 2007;51(3):211-20. doi: 10.1387/ijdb.062247wm.
In Hydractinia, a colonial marine hydroid representing the basal phylum Cnidaria, Wnt signaling plays a major role in the specification of the primary body axis in embryogenesis and in the establishment of the oral pole during metamorphosis. Here we report supplementing investigations on head regeneration and bud formation in post-metamorphic development. Head and bud formation were accompanied by the expression of Wnt, frizzled and Tcf. Activation of Wnt signaling by blocking GSK-3beta affected regeneration, the patterning of growing polyps and the asexual formation of new polyps in the colony. In the presence of lithium ions or paullones, gastric segments excised from adult polyps showed reversal of tissue polarity as they frequently regenerated heads at both ends. Phorbol myristate acetate, a known activator of protein kinase C increased this effect. Global activation of the Wnt pathway caused growing polyps to form ectopic tentacles and additional heads along their body column. Repeated treatment of colonies evoked the emergence of many and dramatically oversized bud fields along the circumference of the colony. These giant fields fell apart into smaller sub-fields, which gave rise to arrays of multi-headed polyps. We interpret the morphogenetic effects of blocking GSK-3beta as reflecting increase in positional value in terms of positional information and activation of Wnt target genes in molecular terms.
在水螅虫属(Hydractinia)中,一种代表刺胞动物门基部的群体海洋水螅,Wnt信号通路在胚胎发育中初级体轴的特化以及变态过程中口极的建立中发挥着重要作用。在此,我们报告了对变态后发育中头部再生和芽形成的补充研究。头部和芽的形成伴随着Wnt、卷曲蛋白(frizzled)和Tcf的表达。通过阻断糖原合成酶激酶-3β(GSK-3β)激活Wnt信号通路会影响再生、生长息肉的模式以及群体中新息肉的无性形成。在锂离子或泡林藤碱存在的情况下,从成年息肉切除的胃段显示出组织极性的反转,因为它们经常在两端再生头部。佛波酯肉豆蔻酸酯(一种已知的蛋白激酶C激活剂)增强了这种效应。Wnt信号通路的全局激活导致生长中的息肉沿着其体柱形成异位触手和额外的头部。对群体的反复处理导致沿着群体周长出现许多且显著超大的芽场。这些巨大的芽场分裂成较小的子场,产生多头息肉阵列。我们将阻断GSK-3β的形态发生效应解释为在位置信息方面反映位置值的增加以及在分子层面上Wnt靶基因的激活。