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分泌卷曲相关蛋白扰乱了具有极化初级纤毛的眼晶状体纤维细胞中的 PCP。

Secreted frizzled-related protein disrupts PCP in eye lens fiber cells that have polarised primary cilia.

机构信息

Save Sight Institute, The University of Sydney, NSW 2001, Australia.

出版信息

Dev Biol. 2010 Feb 15;338(2):193-201. doi: 10.1016/j.ydbio.2009.11.033. Epub 2009 Dec 5.

Abstract

Planar cell polarity (PCP) signaling polarises cells along tissue axes. Although pathways involved are becoming better understood, outstanding issues include; (i) existence/identity of cues that orchestrate global polarisation in tissues, and (ii) the generality of the link between polarisation of primary cilia and asymmetric localisation of PCP proteins. Mammalian lenses are mainly comprised of epithelial-derived fiber cells. Concentrically arranged fibers are precisely aligned as they elongate along the anterior-posterior axis and orientate towards lens poles where they meet fibers from other segments to form characteristic sutures. We show that lens exhibits PCP, with each fiber cell having an apically situated cilium and in most cases this is polarised towards the anterior pole. Frizzled and other PCP proteins are also asymmetrically localised along the equatorial-anterior axis. Mutations in core PCP genes Van Gogh-like 2 and Celsr1 perturb oriented fiber alignment and suture formation. Suppression of the PCP pathway by overexpressing Sfrp2 shows that whilst local groups of fibers are often similarly oriented, they lack global orientation; consequently when local groups of fibers with different orientations meet they form multiple, small, ectopic suture-like configurations. This indicates that this extracellular inhibitor disrupts a global polarising signal that utilises a PCP-mediated mechanism to coordinate the global alignment and orientation of fibers to lens poles.

摘要

平面细胞极性 (PCP) 信号沿组织轴使细胞极化。尽管涉及的途径越来越被理解,但仍存在一些问题;(i) 协调组织中全局极化的线索的存在/身份,以及 (ii) 初级纤毛极化和 PCP 蛋白不对称定位之间的联系的普遍性。哺乳动物晶状体主要由上皮源性纤维细胞组成。随着纤维细胞沿前后轴伸长,同心排列的纤维被精确地排列,并且朝向晶状体极点定向,在那里它们与来自其他节段的纤维相遇形成特征性的缝线。我们表明晶状体表现出 PCP,每个纤维细胞具有位于顶部的纤毛,并且在大多数情况下,纤毛向晶状体极点极化。Frizzled 和其他 PCP 蛋白也沿着赤道-前轴不对称地定位。核心 PCP 基因 Van Gogh-like 2 和 Celsr1 的突变会扰乱定向纤维排列和缝线形成。通过过表达 Sfrp2 抑制 PCP 途径表明,虽然局部纤维群通常具有相似的定向,但它们缺乏全局定向;因此,当具有不同定向的局部纤维群相遇时,它们形成多个小的、异位的缝线样结构。这表明这种细胞外抑制剂破坏了一个全局极化信号,该信号利用 PCP 介导的机制来协调纤维到晶状体极点的全局对齐和定向。

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