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心脏第二流出道形成过程中需要紊乱调节的平面细胞极性信号传导来维持第二心区谱系。

Disheveled mediated planar cell polarity signaling is required in the second heart field lineage for outflow tract morphogenesis.

机构信息

Department of Cell, Developmental and Integrative Biology, University of Alabama at Birmingham, 1918 University Blvd., Birmingham, AL 35294, UK.

出版信息

Dev Biol. 2012 Oct 1;370(1):135-44. doi: 10.1016/j.ydbio.2012.07.023. Epub 2012 Jul 27.

Abstract

Disheveled (Dvl) is a key regulator of both the canonical Wnt and the planar cell polarity (PCP) pathway. Previous genetic studies in mice indicated that outflow tract (OFT) formation requires Dvl1 and 2, but it was unclear which pathway was involved and whether Dvl1/2-mediated signaling was required in the second heart field (SHF) or the cardiac neural crest (CNC) lineage, both of which are critical for OFT development. In this study, we used Dvl1/2 null mice and a set of Dvl2 BAC transgenes that function in a pathway-specific fashion to demonstrate that Dvl1/2-mediated PCP signaling is essential for OFT formation. Lineage-specific gene-ablation further indicated that Dvl1/2 function is dispensable in the CNC, but required in the SHF for OFT lengthening to promote cardiac looping. Mutating the core PCP gene Vangl2 and non-canonical Wnt gene Wnt5a recapitulated the OFT morphogenesis defects observed in Dvl1/2 mutants. Consistent with genetic interaction studies suggesting that Wnt5a signals through the PCP pathway, Dvl1/2 and Wnt5a mutants display aberrant cell packing and defective actin polymerization and filopodia formation specifically in SHF cells in the caudal splanchnic mesoderm (SpM), where Wnt5a and Dvl2 are co-expressed specifically. Our results reveal a critical role of PCP signaling in the SHF during early OFT lengthening and cardiac looping and suggest that a Wnt5a→ Dvl PCP signaling cascade may regulate actin polymerization and protrusive cell behavior in the caudal SpM to promote SHF deployment, OFT lengthening and cardiac looping.

摘要

Dvl(蓬乱蛋白)是经典 Wnt 和平面细胞极性(PCP)通路的关键调节因子。先前在小鼠中的遗传研究表明,流出道(OFT)的形成需要 Dvl1 和 2,但尚不清楚涉及哪种途径,以及 Dvl1/2 介导的信号是否需要在第二心区(SHF)或心脏神经嵴(CNC)谱系中,这两者对于 OFT 的发育都是至关重要的。在这项研究中,我们使用了 Dvl1/2 缺失小鼠和一组以特定方式发挥作用的 Dvl2 BAC 转基因,证明了 Dvl1/2 介导的 PCP 信号对于 OFT 的形成是必不可少的。谱系特异性基因缺失进一步表明,Dvl1/2 功能在 CNC 中是可有可无的,但在 SHF 中是必需的,以促进 OFT 延长并促进心脏环化。突变核心 PCP 基因 Vangl2 和非经典 Wnt 基因 Wnt5a 重现了在 Dvl1/2 突变体中观察到的 OFT 形态发生缺陷。与遗传相互作用研究一致,表明 Wnt5a 通过 PCP 途径发出信号,Dvl1/2 和 Wnt5a 突变体表现出异常的细胞包装和缺陷的肌动蛋白聚合和丝状伪足形成,特别是在尾部内脏中胚层(SpM)中的 SHF 细胞中,Wnt5a 和 Dvl2 特异性地共同表达。我们的结果揭示了 PCP 信号在早期 OFT 延长和心脏环化过程中在 SHF 中的关键作用,并表明 Wnt5a→Dvl PCP 信号级联可能调节尾部 SpM 中的肌动蛋白聚合和突出细胞行为,以促进 SHF 部署、OFT 延长和心脏环化。

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