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Nuclearization of β-catenin in ectodermal precursors confers organizer-like ability to induce endomesoderm and pattern a pluteus larva

机译:外胚层前体中β-catenin的核化赋予组织器类似的能力,以诱导内膜中层和构筑侧柏幼虫

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Background In many bilaterians, asymmetric activation of canonical Wnt (cWnt) signaling at the posterior pole is critical for anterior-posterior (AP) body axis formation. In 16-cell stage sea urchins, nuclearization of β-catenin in micromeres activates a gene regulatory network that defines body axes and induces endomesoderm. Transplanting micromeres to the animal pole of a host embryo induces ectopic endomesoderm in the mesomeres (ectoderm precursors) whereas inhibiting cWnt signaling blocks their endomesoderm-inducing activity and the micromeres become ectoderm-like. We have tested whether ectopic activation of cWnt signaling in mesomeres is sufficient to impart the cells with organizer-like abilities, allowing them to pattern normal embryonic body axes when recombined with a field of mesomeres. Results Fertilized eggs were microinjected with constitutively active Xenopus β-catenin (actβ-cat) mRNA and allowed to develop until the 16-cell stage. Two mesomeres from injected embryos were then recombined with isolated animal halves (AH) from uninjected 16-cell stage embryos. Control chimeras produced animalized phenotypes (hollow balls of ectoderm) and rarely formed skeletogenic mesoderm (SM)-derived spicules, endoderm or pigment cells, a type of non-skeletogenic mesoderm (NSM). In contrast, over half of the 0.5 pg/pL actβ-cat mesomere/AH chimeras formed a partial or complete gut (exhibiting AP polarity), contained mesenchyme-like cells similar to SM, and produced pigment cells. At three days, chimeras formed plutei with normal embryonic body axes. When fates of the actβ-cat mRNA-injected mesomeres were tracked, we found that injected mesomeres formed mesenchyme-like and pigment cells, but endoderm was induced. Higher concentrations of actβ-cat mRNA were less likely to induce endoderm or pigment cells, but had similar mesenchyme-like cell production to 0.5 pg/pL actβ-cat mesomere/AH chimeras. Conclusions Our results show that nuclear β-catenin is sufficient to endow na?ve cells with the ability to act as an organizing center and that β-catenin has both cell-autonomous and non-autonomous effects on cell fate specification in a concentration-dependent manner. These results are consistent with the hypothesis that a shift in the site of early cWnt signaling in cleaving embryos could have modified polarity of the main body axes during metazoan evolution.
机译:背景技术在许多双语者中,后极处的经典Wnt(cWnt)信号的不对称激活对于前后(AP)体轴形成至关重要。在16个细胞阶段的海胆中,微粒中β-catenin的核化会激活一个基因调控网络,该网络定义体轴并诱导内胚层。将微细小动物移植到宿主胚胎的动物极中会诱导子宫内膜异位内膜中胚层(外胚层前体),而抑制cWnt信号传导会阻断其内膜中胚层诱导活性,而微细小鼠则变为外胚层样。我们已经测试了在子宫内膜中cWnt信号的异位激活是否足以赋予细胞类似组织器的能力,使它们在与子宫内膜区域重组时能够塑造正常的胚胎体轴。结果向受精卵中显微注射组成型活性非洲爪蟾β-catenin(actβ-cat)mRNA,并使其发育直至16细胞阶段。然后将来自注射的胚胎的两个子宫体与来自未注射的16细胞阶段胚胎的分离的动物半体(AH)重组。对照嵌合体产生动物化的表型(外胚层的空心球),并且很少形成源自骨骼的中胚层(SM)的针,内胚层或色素细胞,这是一种非骨骼生成的中胚层(NSM)。相反,超过0.5 pg / pL的actβ-catmesomere / AH嵌合体形成了部分或完整的肠道(表现出AP极性),含有类似于SM的间充质样细胞,并产生了色素细胞。在三天后,嵌合体形成了具有正常胚体轴的axes。追踪actβ-catmRNA注射的间充质的命运时,我们发现注射的成肌形成了间充质样和色素细胞,但诱导了内胚层。较高浓度的actβ-catmRNA不太可能诱导内胚层或色素细胞,但具有与0.5 pg / pLactβ-catmesomere / AH嵌合体相似的间充质样细胞生成。结论我们的结果表明,核β-连环蛋白足以赋予幼稚细胞作为组织中心的能力,并且β-连环蛋白对细胞命运的规范具有细胞自主性和非自主性,并具有浓度依赖性。方式。这些结果与这样的假说相符:假裂的胚胎中早期cWnt信号的位点移位可能在后生动物进化过程中改变了主体轴的极性。

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