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探究生物力学输入控制骨骼发育的机制基础:探讨关节处与 Wnt 信号的相互作用。

Investigating the mechanistic basis of biomechanical input controlling skeletal development: exploring the interplay with Wnt signalling at the joint.

机构信息

Department of Zoology, School of Natural Sciences, Trinity College Dublin, The University of Dublin, Dublin, Ireland.

Department of Biological Sciences and Bioengineering, Indian Institute of Technology, Kanpur, Uttar Pradesh 208016, India.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2018 Sep 24;373(1759):20170329. doi: 10.1098/rstb.2017.0329.

Abstract

Embryo movement is essential to the formation of a functional skeleton. Using mouse and chick models, we previously showed that mechanical forces influence gene regulation and tissue patterning, particularly at developing limb joints. However, the molecular mechanisms that underpin the influence of mechanical signals are poorly understood. Wnt signalling is required during skeletal development and is altered under reduced mechanical stimulation. Here, to explore Wnt signalling as a mediator of mechanical input, the expression of Wnt ligand and Fzd receptor genes in the developing skeletal rudiments was profiled. Canonical Wnt activity restricted to the developing joint was shown to be reduced under immobilization, while overexpression of activated β-catenin following electroporation of chick embryo limbs led to joint expansion, supporting the proposed role for Wnt signalling in mechanoresponsive joint patterning. Two key findings advance our understanding of the interplay between Wnt signalling and mechanical stimuli: first, loss of canonical Wnt activity at the joint shows reciprocal, coordinated misregulation of BMP signalling under altered mechanical influence. Second, this occurs simultaneously with increased expression of several Wnt pathway component genes in a territory peripheral to the joint, indicating the importance of mechanical stimulation for a population of potential joint progenitor cells.This article is part of the Theo Murphy meeting issue 'Mechanics of Development'.

摘要

胚胎运动对于功能性骨骼的形成至关重要。我们之前使用小鼠和鸡模型表明,机械力会影响基因调控和组织模式形成,尤其是在发育中的肢体关节中。然而,机械信号影响的分子机制还知之甚少。Wnt 信号在骨骼发育过程中是必需的,并且在机械刺激减少的情况下会发生改变。在这里,为了探索 Wnt 信号作为机械输入的介质,我们对发育中骨骼原基中的 Wnt 配体和 Fzd 受体基因的表达进行了分析。固定化后,发育中的关节中受限的经典 Wnt 活性减少,而电穿孔鸡胚肢体后过表达激活的β-连环蛋白会导致关节扩张,这支持了 Wnt 信号在机械响应关节模式形成中的作用。有两个关键发现推进了我们对 Wnt 信号和机械刺激之间相互作用的理解:首先,关节处经典 Wnt 活性的丧失表明在机械影响改变下 BMP 信号的反向协调失调。其次,这与关节周围区域中几个 Wnt 途径组成基因的表达增加同时发生,表明机械刺激对潜在关节祖细胞群体的重要性。本文是“发育力学”Theo Murphy 会议专刊的一部分。

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