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Nkd1 作为 Wnt 信号的被动拮抗剂发挥作用。

Nkd1 functions as a passive antagonist of Wnt signaling.

机构信息

Department of Molecular and Cellular Biology, University of Guelph, Guelph, Ontario, Canada.

出版信息

PLoS One. 2013 Aug 29;8(8):e74666. doi: 10.1371/journal.pone.0074666. eCollection 2013.

Abstract

Wnt signaling is involved in many aspects of development and in the homeostasis of stem cells. Its importance is underscored by the fact that misregulation of Wnt signaling has been implicated in numerous diseases, especially colorectal cancer. However, how Wnt signaling regulates itself is not well understood. There are several Wnt negative feedback regulators, which are active antagonists of Wnt signaling, but one feedback regulator, Nkd1, has reduced activity compared to other antagonists, yet is still a negative feedback regulator. Here we describe our efforts to understand the role of Nkd1 using Wnt signaling compromised zebrafish mutant lines. In several of these lines, Nkd1 function was not any more active than it was in wild type embryos. However, we found that Nkd1's ability to antagonize canonical Wnt/β-catenin signaling was enhanced in the Wnt/Planar Cell Polarity mutants silberblick (slb/wnt11) and trilobite (tri/vangl2). While slb and tri mutants do not display alterations in canonical Wnt signaling, we found that they are hypersensitive to it. Overexpression of the canonical Wnt/β-catenin ligand Wnt8a in slb or tri mutants resulted in dorsalized embryos, with tri mutants being much more sensitive to Wnt8a than slb mutants. Furthermore, the hyperdorsalization caused by Wnt8a in tri could be rescued by Nkd1. These results suggest that Nkd1 functions as a passive antagonist of Wnt signaling, functioning only when homeostatic levels of Wnt signaling have been breached or when Wnt signaling becomes destabilized.

摘要

Wnt 信号转导参与了许多发育过程和干细胞的稳态维持。其重要性在于,Wnt 信号转导的失调与许多疾病有关,尤其是结直肠癌。然而,Wnt 信号转导如何自我调节还不太清楚。有几种 Wnt 负反馈调节剂,它们是 Wnt 信号转导的有效拮抗剂,但一种反馈调节剂 Nkd1 的活性比其他拮抗剂降低,但仍然是一种负反馈调节剂。在这里,我们描述了使用 Wnt 信号受损的斑马鱼突变系来理解 Nkd1 作用的努力。在这些系中的几种中,Nkd1 的功能并不比野生型胚胎中的更活跃。然而,我们发现 Nkd1 拮抗经典 Wnt/β-catenin 信号的能力在 Wnt/Planar Cell Polarity 突变体 silberblick (slb/wnt11) 和 trilobite (tri/vangl2) 中增强了。虽然 slb 和 tri 突变体没有显示出经典 Wnt 信号的改变,但我们发现它们对其敏感。在 slb 或 tri 突变体中过表达经典 Wnt/β-catenin 配体 Wnt8a 会导致胚胎背侧化,tri 突变体比 slb 突变体对 Wnt8a 更敏感。此外,Wnt8a 在 tri 中引起的超背侧化可以被 Nkd1 挽救。这些结果表明,Nkd1 作为 Wnt 信号转导的被动拮抗剂发挥作用,仅在稳态 Wnt 信号转导被打破或 Wnt 信号转导变得不稳定时才起作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9323/3756965/6ce31bc89455/pone.0074666.g001.jpg

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