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非经典Wnt信号通路通过抑制Gsk3β调节耳蜗生长和平面细胞极性。

Non-Canonical Wnt Signaling Regulates Cochlear Outgrowth and Planar Cell Polarity via Gsk3β Inhibition.

作者信息

Landin Malt Andre, Clancy Shaylyn, Hwang Diane, Liu Alice, Smith Connor, Smith Margaret, Hatley Maya, Clemens Christopher, Lu Xiaowei

机构信息

Department of Cell Biology, University of Virginia Health System, Charlottesville, VA, United States.

出版信息

Front Cell Dev Biol. 2021 Apr 16;9:649830. doi: 10.3389/fcell.2021.649830. eCollection 2021.

Abstract

During development, sensory hair cells (HCs) in the cochlea assemble a stereociliary hair bundle on their apical surface with planar polarized structure and orientation. We have recently identified a non-canonical, Wnt/G-protein/PI3K signaling pathway that promotes cochlear outgrowth and coordinates planar polarization of the HC apical cytoskeleton and alignment of HC orientation across the cochlear epithelium. Here, we determined the involvement of the kinase Gsk3β and the small GTPase Rac1 in non-canonical Wnt signaling and its regulation of the planar cell polarity (PCP) pathway in the cochlea. We provided the first evidence for Wnt regulation of Gsk3β activity via inhibitory Ser9 phosphorylation. Furthermore, we carried out genetic rescue experiments of cochlear defects caused by blocking Wnt secretion. We showed that cochlear outgrowth was partially rescued by genetic ablation of Gsk3β but not by expression of stabilized β-catenin; while PCP defects, including hair bundle polarity and junctional localization of the core PCP proteins Fzd6 and Dvl2, were partially rescued by either Gsk3β ablation or constitutive activation of Rac1. Our results identify Gsk3β and likely Rac1 as downstream components of non-canonical Wnt signaling and mediators of cochlear outgrowth, HC planar polarity, and localization of a subset of core PCP proteins in the cochlea.

摘要

在发育过程中,耳蜗中的感觉毛细胞(HCs)在其顶端表面组装具有平面极化结构和方向的静纤毛束。我们最近发现了一种非经典的Wnt/G蛋白/PI3K信号通路,该通路促进耳蜗生长,并协调HC顶端细胞骨架的平面极化以及HC在耳蜗上皮中的方向排列。在这里,我们确定了激酶Gsk3β和小GTP酶Rac1在非经典Wnt信号传导中的作用及其对耳蜗平面细胞极性(PCP)通路的调节。我们提供了Wnt通过抑制性Ser9磷酸化调节Gsk3β活性的首个证据。此外,我们对因阻断Wnt分泌而导致的耳蜗缺陷进行了基因拯救实验。我们表明,通过Gsk3β的基因敲除可部分挽救耳蜗生长,但稳定型β-连环蛋白的表达则不能;而PCP缺陷,包括毛束极性以及核心PCP蛋白Fzd6和Dvl2的连接定位,可通过Gsk3β敲除或Rac1的组成型激活得到部分挽救。我们的结果确定Gsk3β以及可能的Rac1是非经典Wnt信号传导的下游成分,以及耳蜗生长、HC平面极性和耳蜗中一部分核心PCP蛋白定位的介质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61ea/8086559/a6156e74a3bb/fcell-09-649830-g001.jpg

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