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海胆卵子和胚胎中盘绕蛋白在一个新的植物皮质域中的差异调控:对经典 Wnt 信号的局部激活的影响。

Differential regulation of disheveled in a novel vegetal cortical domain in sea urchin eggs and embryos: implications for the localized activation of canonical Wnt signaling.

机构信息

Department of Biology, University of Miami, Coral Gables, Florida, United States of America.

出版信息

PLoS One. 2013 Nov 13;8(11):e80693. doi: 10.1371/journal.pone.0080693. eCollection 2013.

Abstract

Pattern formation along the animal-vegetal (AV) axis in sea urchin embryos is initiated when canonical Wnt (cWnt) signaling is activated in vegetal blastomeres. The mechanisms that restrict cWnt signaling to vegetal blastomeres are not well understood, but there is increasing evidence that the egg's vegetal cortex plays a critical role in this process by mediating localized "activation" of Disheveled (Dsh). To investigate how Dsh activity is regulated along the AV axis, sea urchin-specific Dsh antibodies were used to examine expression, subcellular localization, and post-translational modification of Dsh during development. Dsh is broadly expressed during early sea urchin development, but immunolocalization studies revealed that this protein is enriched in a punctate pattern in a novel vegetal cortical domain (VCD) in the egg. Vegetal blastomeres inherit this VCD during embryogenesis, and at the 60-cell stage Dsh puncta are seen in all cells that display nuclear β-catenin. Analysis of Dsh post-translational modification using two-dimensional Western blot analysis revealed that compared to Dsh pools in the bulk cytoplasm, this protein is differentially modified in the VCD and in the 16-cell stage micromeres that partially inherit this domain. Dsh localization to the VCD is not directly affected by disruption of microfilaments and microtubules, but unexpectedly, microfilament disruption led to degradation of all the Dsh pools in unfertilized eggs over a period of incubation suggesting that microfilament integrity is required for maintaining Dsh stability. These results demonstrate that a pool of differentially modified Dsh in the VCD is selectively inherited by the vegetal blastomeres that activate cWnt signaling in early embryos, and suggests that this domain functions as a scaffold for localized Dsh activation. Localized cWnt activation regulates AV axis patterning in many metazoan embryos. Hence, it is possible that the VCD is an evolutionarily conserved cytoarchitectural domain that specifies the AV axis in metazoan ova.

摘要

海胆胚胎中沿动物-植物(AV)轴的模式形成是在植物裂球中激活经典 Wnt(cWnt)信号时开始的。将 cWnt 信号限制在植物裂球中的机制尚不清楚,但越来越多的证据表明,卵子的植物皮层通过介导 Disheveled(Dsh)的局部“激活”在这个过程中起着关键作用。为了研究 Dsh 活性如何沿 AV 轴调节,使用海胆特异性 Dsh 抗体来检查 Dsh 在发育过程中的表达、亚细胞定位和翻译后修饰。Dsh 在早期海胆发育过程中广泛表达,但免疫定位研究表明,这种蛋白质在卵子中新的植物皮质域(VCD)中呈点状富集。植物裂球在胚胎发生过程中继承了这个 VCD,在 60 细胞阶段,在显示核 β-catenin 的所有细胞中都可以看到 Dsh 斑点。使用二维 Western blot 分析对 Dsh 翻译后修饰的分析表明,与 bulk cytoplasm 中的 Dsh 池相比,该蛋白在 VCD 中以及部分继承该域的 16 细胞阶段小分裂球中被差异化修饰。Dsh 定位于 VCD 不受微丝和微管破坏的直接影响,但出乎意料的是,微丝破坏导致在孵育过程中未受精卵中所有 Dsh 池降解,这表明微丝完整性对于维持 Dsh 稳定性是必需的。这些结果表明,VCD 中差异修饰的 Dsh 池被早期胚胎中激活 cWnt 信号的植物裂球选择性继承,并表明该域作为局部 Dsh 激活的支架。局部 cWnt 激活调节许多后生动物胚胎中的 AV 轴模式形成。因此,有可能 VCD 是一个进化上保守的细胞结构域,指定后生动物卵子中的 AV 轴。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15ab/3827468/e2e6be9f5d1a/pone.0080693.g001.jpg

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