The complex relationship of Wnt-signaling pathways and cilia.

2区 生物学 Q1 Biochemistry, Genetics and Molecular Biology
Current Topics in Developmental Biology Pub Date : 2023-01-01 Epub Date: 2023-10-17 DOI:10.1016/bs.ctdb.2023.09.002
Linh T Vuong, Marek Mlodzik
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引用次数: 0

Abstract

Wnt family proteins are secreted glycolipoproteins that signal through multitude of signal transduction pathways. The Wnt-pathways are conserved and critical in all metazoans. They are essential for embryonic development, organogenesis and homeostasis, and associated with many diseases when defective or deregulated. Wnt signaling pathways comprise the canonical Wnt pathway, best known for its stabilization of β-catenin and associated nuclear β-catenin activity in gene regulation, and several non-canonical signaling branches. Wnt-Planar Cell Polarity (PCP) signaling has received the most attention among the non-canonical Wnt pathways. The relationship of cilia to Wnt-signaling is complex. While it was suggested that canonical Wnt signaling requires cilia this notion was always challenged by results suggesting the opposite. Recent developments provide insight and clarification to the relationship of Wnt signaling pathways and cilia. First, it has been now demonstrated that while ciliary proteins, in particular the IFT-A complex, are required for canonical Wnt/β-catenin signaling, the cilium as a structure is not. In contrast, recent work has defined a diverged canonical signaling branch (not affecting β-catenin) to be required for ciliary biogenesis and cilia function. Furthermore, the non-canonical Wnt-PCP pathway does not affect cilia biogenesis per se, but it regulates the position of cilia within cells in many cell types, possibly in all cells where it is active, with cilia being placed near the side of the cell that has the Frizzled-Dishevelled complex. This Wnt/PCP feature is conserved with both centrioles and basal bodies/cilia being positioned accordingly, and it is also used to align mitotic spindles within the Wnt-PCP polarization axis. It also coordinates the alignment of cilia in multiciliated cells. This article addresses these new insights and different links and relationships between cilia and Wnt signaling.

wnt信号通路与纤毛的复杂关系。
Wnt家族蛋白是通过多种信号转导途径发出信号的分泌型糖脂蛋白。wnt通路在所有后生动物中都是保守的和关键的。它们对胚胎发育、器官发生和体内平衡至关重要,当它们有缺陷或失调时,与许多疾病有关。Wnt信号通路包括典型的Wnt通路和一些非典型的信号分支。典型的Wnt通路以其在基因调控中稳定β-catenin和相关的核β-catenin活性而闻名。平面细胞极性(PCP)信号是Wnt非典型信号通路中最受关注的。纤毛与wnt信号的关系是复杂的。虽然有人认为典型的Wnt信号需要纤毛,但这一观点总是受到相反结果的挑战。最近的发展为Wnt信号通路和纤毛的关系提供了见解和澄清。首先,现在已经证明,虽然纤毛蛋白,特别是IFT-A复合物,是典型Wnt/β-catenin信号传导所必需的,但纤毛作为一种结构却不是。相比之下,最近的工作已经定义了一个分散的典型信号分支(不影响β-catenin)是纤毛生物发生和纤毛功能所必需的。此外,非规范的Wnt-PCP通路本身并不影响纤毛的生物发生,但它在许多细胞类型中调节纤毛在细胞内的位置,可能在所有具有活性的细胞中,纤毛被放置在具有卷曲-凌乱复合体的细胞附近。这种Wnt/PCP特征是保守的,中心粒和基体/纤毛都处于相应的位置,它也用于在Wnt-PCP极化轴内对齐有丝分裂纺锤体。它还协调多纤毛细胞中纤毛的排列。本文讨论了这些新的见解以及纤毛和Wnt信号之间的不同联系和关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
6.00
自引率
0.00%
发文量
91
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