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A Comprehensive Overview of Skeletal Phenotypes Associated with Alterations in Wnt/β-catenin Signaling in Humans and Mice

机译:与人类和小鼠的Wnt /β-catenin信号传导变化相关的骨骼表型的全面概述

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摘要

The Wnt signaling pathway plays key roles in differentiation and development and alterations in this signaling pathway are causally associated with numerous human diseases. While several laboratories were examining roles for Wnt signaling in skeletal development during the 1990s, interest in the pathway rose exponentially when three key papers were published in 2001–2002. One report found that loss of the Wnt co-receptor, Low-density lipoprotein related protein-5 (LRP5), was the underlying genetic cause of the syndrome Osteoporosis pseudoglioma (OPPG). OPPG is characterized by early-onset osteoporosis causing increased susceptibility to debilitating fractures. Shortly thereafter, two groups reported that individuals carrying a specific point mutation in LRP5 (G171V) develop high-bone mass. Subsequent to this, the causative mechanisms for these observations heightened the need to understand the mechanisms by which Wnt signaling controlled bone development and homeostasis and encouraged significant investment from biotechnology and pharmaceutical companies to develop methods to activate Wnt signaling to increase bone mass to treat osteoporosis and other bone disease. In this review, we will briefly summarize the cellular mechanisms underlying Wnt signaling and discuss the observations related to OPPG and the high-bone mass disorders that heightened the appreciation of the role of Wnt signaling in normal bone development and homeostasis. We will then present a comprehensive overview of the core components of the pathway with an emphasis on the phenotypes associated with mice carrying genetically engineered mutations in these genes and clinical observations that further link alterations in the pathway to changes in human bone.
机译:Wnt信号通路在分化和发育中起关键作用,并且该信号通路的改变与许多人类疾病有因果关系。虽然1990年代有几个实验室研究Wnt信号在骨骼发育中的作用,但当2001年至2002年发表三篇重要论文时,对该途径的兴趣呈指数增长。一份报告发现,Wnt共同受体低密度脂蛋白相关蛋白5(LRP5)的丢失是假性骨质疏松症(OPPG)综合征的潜在遗传原因。 OPPG的特征是早发性骨质疏松症,导致对破坏性骨折的敏感性增加。此后不久,有两个小组报告说,携带LRP5(G171V)特定点突变的个体会出现高骨量。此后,用于这些观察的原因机制更加需要了解Wnt信号控制骨骼发育和体内平衡的机制,并鼓励生物技术和制药公司投入大量资金开发激活Wnt信号的方法以增加骨质以治疗骨质疏松和其他骨骼疾病。在这篇综述中,我们将简要总结Wnt信号传导的细胞机制,并讨论与OPPG和高骨质量疾病有关的观察结果,这些现象增强了对Wnt信号传导在正常骨骼发育和体内平衡中作用的认识。然后,我们将对该途径的核心组成部分进行全面概述,重点是与在这些基因中携带基因工程突变的小鼠相关的表型以及进一步将途径改变与人骨变化联系起来的临床观察。

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