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Hoxa2 基因获得性功能在软骨生成中的分子研究:特发性匀称性身材矮小的模型。

Molecular study of a Hoxa2 gain-of-function in chondrogenesis: a model of idiopathic proportionate short stature.

机构信息

Ecole de Kinésiologie et Récréologie, Faculté des Sciences de la Santé et Services Communautaires, Université de Moncton, Moncton, NB E1A 3E9, Canada.

出版信息

Int J Mol Sci. 2013 Oct 14;14(10):20386-98. doi: 10.3390/ijms141020386.

Abstract

In a previous study using transgenic mice ectopically expressing Hoxa2 during chondrogenesis, we associated the animal phenotype to human idiopathic proportionate short stature. Our analysis showed that this overall size reduction was correlated with a negative influence of Hoxa2 at the first step of endochondral ossification. However, the molecular pathways leading to such phenotype are still unknown. Using protein immunodetection and histological techniques comparing transgenic mice to controls, we show here that the persistent expression of Hoxa2 in chondrogenic territories provokes a general down-regulation of the main factors controlling the differentiation cascade, such as Bapx1, Bmp7, Bmpr1a, Ihh, Msx1, Pax9, Sox6, Sox9 and Wnt5a. These data confirm the impairment of chondrogenic differentiation by Hoxa2 overexpression. They also show a selective effect of Hoxa2 on endochondral ossification processes since Gdf5 and Gdf10, and Bmp4 or PthrP were up-regulated and unmodified, respectively. Since Hoxa2 deregulation in mice induces a proportionate short stature phenotype mimicking human idiopathic conditions, our results give an insight into understanding proportionate short stature pathogenesis by highlighting molecular factors whose combined deregulation may be involved in such a disease.

摘要

在之前的研究中,我们使用在软骨形成过程中异位表达 Hoxa2 的转基因小鼠,将动物表型与人类特发性匀称性身材矮小联系起来。我们的分析表明,这种整体尺寸减小与 Hoxa2 在软骨内骨化的第一步中的负向影响有关。然而,导致这种表型的分子途径仍然未知。通过比较转基因小鼠和对照的蛋白质免疫检测和组织学技术,我们在这里表明,Hoxa2 在软骨形成区域的持续表达会引起控制分化级联的主要因子的普遍下调,如 Bapx1、Bmp7、Bmpr1a、Ihh、Msx1、Pax9、Sox6、Sox9 和 Wnt5a。这些数据证实了 Hoxa2 过表达对软骨分化的损害。它们还显示了 Hoxa2 对软骨内骨化过程的选择性影响,因为 Gdf5 和 Gdf10 以及 Bmp4 或 PthrP 分别上调且未改变。由于 Hoxa2 在小鼠中的失调会诱导类似于人类特发性疾病的匀称性身材矮小表型,我们的结果提供了对理解匀称性身材矮小发病机制的深入了解,突出了分子因素,其联合失调可能与这种疾病有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b46/3821620/363f757c752f/ijms-14-20386f1.jpg

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