Lengfeld Tobias, Watanabe Hiroshi, Simakov Oleg, Lindgens Dirk, Gee Lydia, Law Lee, Schmidt Heiko A, Ozbek Suat, Bode Hans, Holstein Thomas W
Department of Molecular Evolution and Genomics, Heidelberg University, Im Neuenheimer Feld 230, Heidelberg, Germany.
Dev Biol. 2009 Jun 1;330(1):186-99. doi: 10.1016/j.ydbio.2009.02.004. Epub 2009 Feb 13.
Wnt genes and beta-catenin signaling are involved in axial patterning processes in vertebrate embryogenesis in setting up the Spemann-Mangold organizer in amphibian embryos. An organizer with a similar function is present in the hypostome of an adult Hydra polyp. Previously, a Hydra ortholog of Wnt3 (HyWnt3), which is expressed in the hypostome, has been described. Here, ten additional Hydra Wnt genes have been identified. Of these, six (HyWnt1, -7, -9/10a, -9/10c, -11, and -16) are expressed in the adult hypostome. And, as is HyWnt3, these six Wnt genes are also expressed when a new head organizer is formed during head regeneration and bud formation. The kinetics of Wnt gene expressions during head regeneration suggests that a cascade of consecutive Wnt activation accompanies regeneration, and HyWnt3 begins this cascade. Recombinant HyWnt3 protein induced body column tissue to undergo head formation. It also increased the head formation capacity in the head regeneration-deficient mutant strain reg-16 to that of wild-type strains. In addition our data reveal striking similarities in the molecular basis of the organizer in Hydra and axis polarization in chordates (e.g. Spemann's organizer) as well as it's role in regeneration suggesting a conserved function of Wnt signaling in setting up this ancient metazoan signaling center.
Wnt基因和β-连环蛋白信号传导参与脊椎动物胚胎发育过程中的轴向模式形成过程,在两栖动物胚胎中建立施佩曼-曼戈尔德组织者。在成年水螅息肉的口下叶中存在具有类似功能的组织者。此前,已经描述了一种在口下叶中表达的水螅Wnt3直系同源基因(HyWnt3)。在此,又鉴定出另外10个水螅Wnt基因。其中,6个(HyWnt1、-7、-9/10a、-9/10c、-11和-16)在成年口下叶中表达。而且,与HyWnt3一样,在头部再生和芽形成过程中形成新的头部组织者时,这6个Wnt基因也会表达。头部再生过程中Wnt基因表达的动力学表明,一连串连续的Wnt激活伴随着再生,而HyWnt3启动了这一连串激活。重组HyWnt3蛋白诱导体柱组织形成头部。它还将头部再生缺陷突变株reg-16的头部形成能力提高到野生型株的水平。此外,我们的数据揭示了水螅中组织者的分子基础与脊索动物(如施佩曼组织者)的轴极化及其在再生中的作用之间存在惊人的相似性,这表明Wnt信号传导在建立这个古老的后生动物信号中心方面具有保守功能。