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Wdr18 对于斑马鱼的 Kupffer 囊泡形成和体型不对称调控是必需的。

Wdr18 is required for Kupffer's vesicle formation and regulation of body asymmetry in zebrafish.

机构信息

Key Laboratory of Cell Proliferation and Differentiation of Ministry of Education, Center of Developmental Biology and Genetics, College of Life Sciences, Peking University, Beijing, People's Republic of China.

出版信息

PLoS One. 2011;6(8):e23386. doi: 10.1371/journal.pone.0023386. Epub 2011 Aug 18.

Abstract

Correct specification of the left-right (L-R) axis is important for organ morphogenesis. Conserved mechanisms involving cilia rotation inside node-like structures and asymmetric Nodal signaling in the lateral plate mesoderm (LPM), which are important symmetry-breaking events, have been intensively studied. In zebrafish, the clustering and migration of dorsal forerunner cells (DFCs) is critical for the formation of the Kuppfer's vesicle (KV). However, molecular events underlying DFC clustering and migration are less understood. The WD-repeat proteins function in a variety of biological processes, including cytoskeleton assembly, intracellular trafficking, mRNA splicing, transcriptional regulation and cell migration. However, little is known about the function of WD-repeat proteins in L-R asymmetry determination. Here, we report the identification and functional analyses of zebrafish wdr18, a novel gene that encodes a WD-repeat protein that is highly conserved among vertebrate species. wdr18 was identified from a Tol2 transposon-mediated enhancer trap screen. Follow-up analysis of wdr18 mRNA expression showed that it was detected in DFCs or the KV progenitor cells and later in the KV at early somitogenesis stages. Morpholino knockdown of wdr18 resulted in laterality defects in the visceral organs, which were preceded by the mis-expression of Nodal-related genes, including spaw and pitx2. Examination of morphants at earlier stages revealed that the KV had fewer and shorter cilia which are immotile and a smaller cavity. We further investigated the organization of DFCs in wdr18 morphant embryos using ntl and sox17 as specific markers and found that the clustering and migration of DFC was altered, leading to a disorganized KV. Finally, through a combination of wdr18 and itgb1b morpholino injections, we provided evidence that wdr18 and itgb1b genetically interact in the laterality determination process. Thus, we reveal a new and essential role for WD-repeat proteins in the determination and regulation of L-R asymmetry and propose a potential mechanism for wdr18 in the regulation of DFC clustering and migration and KV formation.

摘要

正确指定左右(L-R)轴对于器官形态发生很重要。涉及纤毛在节点样结构内旋转和侧板中胚层(LPM)中不对称 Nodal 信号的保守机制,这些都是重要的对称破缺事件,已被深入研究。在斑马鱼中,背侧前体细胞(DFC)的聚集和迁移对于 Kupffer 泡(KV)的形成至关重要。然而,DFC 聚集和迁移的分子事件知之甚少。WD 重复蛋白在多种生物学过程中发挥作用,包括细胞骨架组装、细胞内运输、mRNA 剪接、转录调控和细胞迁移。然而,WD 重复蛋白在 L-R 不对称性决定中的功能知之甚少。在这里,我们报告了斑马鱼 wdr18 的鉴定和功能分析,wdr18 是一种新基因,编码一种 WD 重复蛋白,在脊椎动物中高度保守。wdr18 是从 Tol2 转座子介导的增强子陷阱筛选中鉴定出来的。wdr18 mRNA 表达的后续分析表明,它在 DFC 或 KV 祖细胞中被检测到,并在早期体节形成阶段在 KV 中表达。wdr18 的 morpholino 敲低导致内脏器官的偏侧性缺陷,这之前是 Nodal 相关基因(包括 spaw 和 pitx2)的异常表达。对早期阶段的形态发生体的检查表明,KV 中的纤毛数量较少且较短,纤毛不动且腔较小。我们进一步使用 ntl 和 sox17 作为特异性标记物研究了 wdr18 形态发生体胚胎中的 DFC 组织,并发现 DFC 的聚集和迁移发生改变,导致 KV 排列紊乱。最后,通过 wdr18 和 itgb1b morpholino 注射的组合,我们提供了证据表明 wdr18 和 itgb1b 在左右性决定过程中存在遗传相互作用。因此,我们揭示了 WD 重复蛋白在左右不对称性的决定和调节中的新的和必需的作用,并提出了 wdr18 在调节 DFC 聚集和迁移以及 KV 形成中的潜在机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c15/3158084/2d9fff434542/pone.0023386.g001.jpg

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