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Syndecan 4 与 Vangl2 在遗传上相互作用,调节神经管闭合和平面细胞极性。

Syndecan 4 interacts genetically with Vangl2 to regulate neural tube closure and planar cell polarity.

机构信息

Center for Aging and Regeneration, Millennium Nucleus in Regenerative Biology, Faculty of Biological Sciences, P. Universidad Católica de Chile, Alameda 340 Santiago, Chile.

出版信息

Development. 2013 Jul;140(14):3008-17. doi: 10.1242/dev.091173. Epub 2013 Jun 12.

Abstract

Syndecan 4 (Sdc4) is a cell-surface heparan sulfate proteoglycan (HSPG) that regulates gastrulation, neural tube closure and directed neural crest migration in Xenopus development. To determine whether Sdc4 participates in Wnt/PCP signaling during mouse development, we evaluated a possible interaction between a null mutation of Sdc4 and the loop-tail allele of Vangl2. Sdc4 is expressed in multiple tissues, but particularly in the non-neural ectoderm, hindgut and otic vesicles. Sdc4;Vangl2(Lp) compound mutant mice have defective spinal neural tube closure, disrupted orientation of the stereocilia bundles in the cochlea and delayed wound healing, demonstrating a strong genetic interaction. In Xenopus, co-injection of suboptimal amounts of Sdc4 and Vangl2 morpholinos resulted in a significantly greater proportion of embryos with defective neural tube closure than each individual morpholino alone. To probe the mechanism of this interaction, we overexpressed or knocked down Vangl2 function in HEK293 cells. The Sdc4 and Vangl2 proteins colocalize, and Vangl2, particularly the Vangl2(Lp) mutant form, diminishes Sdc4 protein levels. Conversely, Vangl2 knockdown enhances Sdc4 protein levels. Overall HSPG steady-state levels were regulated by Vangl2, suggesting a molecular mechanism for the genetic interaction in which Vangl2(Lp/+) enhances the Sdc4-null phenotype. This could be mediated via heparan sulfate residues, as Vangl2(Lp/+) embryos fail to initiate neural tube closure and develop craniorachischisis (usually seen only in Vangl2(Lp/Lp)) when cultured in the presence of chlorate, a sulfation inhibitor. These results demonstrate that Sdc4 can participate in the Wnt/PCP pathway, unveiling its importance during neural tube closure in mammalian embryos.

摘要

硫酸乙酰肝素蛋白聚糖 4(Sdc4)是一种细胞表面硫酸乙酰肝素蛋白聚糖(HSPG),它在爪蟾发育中调节原肠胚形成、神经管闭合和定向神经嵴迁移。为了确定 Sdc4 是否参与小鼠发育过程中的 Wnt/PCP 信号通路,我们评估了 Sdc4 缺失突变与 Vangl2 环尾等位基因之间的可能相互作用。Sdc4 在多种组织中表达,但特别在非神经外胚层、后肠和耳泡中表达。Sdc4;Vangl2(Lp)复合突变小鼠的脊髓神经管闭合缺陷,耳蜗中立体纤毛束的定向紊乱和伤口愈合延迟,表明存在强烈的遗传相互作用。在 Xenopus 中,共注射亚最佳量的 Sdc4 和 Vangl2 形态发生素导致神经管闭合缺陷的胚胎比例显著高于每个单独的形态发生素。为了探究这种相互作用的机制,我们在 HEK293 细胞中过表达或敲低了 Vangl2 功能。Sdc4 和 Vangl2 蛋白共定位,并且 Vangl2,特别是 Vangl2(Lp)突变形式,降低了 Sdc4 蛋白水平。相反,Vangl2 敲低增强了 Sdc4 蛋白水平。总体而言,HSPG 稳态水平受 Vangl2 调节,这表明遗传相互作用的分子机制,其中 Vangl2(Lp/+)增强了 Sdc4 缺失表型。这可能是通过硫酸乙酰肝素残基介导的,因为 Vangl2(Lp/+)胚胎在氯酸盐存在下培养时不能启动神经管闭合并发育颅脊柱裂(通常仅在 Vangl2(Lp/Lp)中看到),氯酸盐是一种硫酸化抑制剂。这些结果表明 Sdc4 可以参与 Wnt/PCP 途径,揭示了其在哺乳动物胚胎神经管闭合过程中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9948/3699283/5978584d61d0/DEV091173F1.jpg

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