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初级纤毛迁移依赖于 G 蛋白信号控制亚顶细胞骨架。

Primary cilium migration depends on G-protein signalling control of subapical cytoskeleton.

机构信息

1] INSERM, Planar Polarity and Plasticity Group, Neurocentre Magendie, 33077 Bordeaux, France [2] Université Bordeaux, Neurocentre Magendie, Bordeaux 33077, France.

出版信息

Nat Cell Biol. 2013 Sep;15(9):1107-15. doi: 10.1038/ncb2819. Epub 2013 Aug 11.

Abstract

In ciliated mammalian cells, the precise migration of the primary cilium at the apical surface of the cells, also referred to as translational polarity, defines planar cell polarity (PCP) in very early stages. Recent research has revealed a co-dependence between planar polarization of some cell types and cilium positioning at the surface of cells. This important role of the primary cilium in mammalian cells is in contrast with its absence from Drosophila melanogaster PCP establishment. Here, we show that deletion of GTP-binding protein alpha-i subunit 3 (Gαi3) and mammalian Partner of inscuteable (mPins) disrupts the migration of the kinocilium at the surface of cochlear hair cells and affects hair bundle orientation and shape. Inhibition of G-protein function in vitro leads to kinocilium migration defects, PCP phenotype and abnormal hair bundle morphology. We show that Gαi3/mPins are expressed in an apical and distal asymmetrical domain, which is opposite and complementary to an aPKC/Par-3/Par-6b expression domain, and non-overlapping with the core PCP protein Vangl2. Thus G-protein-dependent signalling controls the migration of the cilium cell autonomously, whereas core PCP signalling controls long-range tissue PCP.

摘要

在纤毛哺乳动物细胞中,初级纤毛在细胞顶表面的精确迁移,也称为平移极性,在早期阶段定义了平面细胞极性(PCP)。最近的研究揭示了某些细胞类型的平面极化和细胞表面纤毛定位之间的共同依赖性。与无纤毛的果蝇 PCP 建立相反,初级纤毛在哺乳动物细胞中的这一重要作用缺失了。在这里,我们表明 G 蛋白结合蛋白α-i 亚基 3(Gαi3)和哺乳动物 inscuteable 伙伴(mPins)的缺失会破坏耳蜗毛细胞表面的动纤毛的迁移,并影响毛束的方向和形状。体外抑制 G 蛋白功能会导致动纤毛迁移缺陷、PCP 表型和异常毛束形态。我们表明,Gαi3/mPins 在顶端和远端不对称域中表达,该域与 aPKC/Par-3/Par-6b 表达域相反且互补,并且与核心 PCP 蛋白 Vangl2 不重叠。因此,G 蛋白依赖性信号传导自主控制纤毛的迁移,而核心 PCP 信号传导控制长程组织 PCP。

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