首页> 外文期刊>The Journal of biological chemistry >Conditional Ablation of the Heparan Sulfate-synthesizing Enzyme Ext1 Leads to Dysregulation of Bone Morphogenic Protein Signaling and Severe Skeletal Defects
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Conditional Ablation of the Heparan Sulfate-synthesizing Enzyme Ext1 Leads to Dysregulation of Bone Morphogenic Protein Signaling and Severe Skeletal Defects

机译:硫酸乙酰肝素合成酶Ext1的条件消融导致骨形态发生蛋白信号传导和严重的骨骼缺陷的失调

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Increasing evidence indicates that heparan sulfate (HS) is an integral component of many morphogen signaling pathways. However, its mechanisms of action appear to be diverse, depending on the type of morphogen and the developmental contexts. To define the function of HS in skeletal development, we conditionally ablated Ext1, which encodes an essential glycosyltransferase for HS synthesis, in limb bud mesenchyme using the Prx1-Cre transgene. These conditional Ext1 mutant mice display severe limb skeletal defects, including shortened and malformed limb bones, oligodactyly, and fusion of joints. In developing limb buds of mutant mice, chondrogenic differentiation of mesenchymal condensations is delayed and impaired, whereas the area of differentiation is diffusely expanded. Correspondingly, the distribution of both bone morphogenic protein (BMP) signaling domains and BMP2 immunoreactivity in the mutant limb mesenchyme is broadened and diffuse. In micromass cultures, chondrogenic differentiation of mutant chondrocytes is delayed, and the responsiveness to exogenous BMPs is attenuated. Moreover, the segregation of the pSmad1/5/8-expressing chondrocytes and fibronectin-expressing perichondrium-like cells surrounding chondrocyte nodules is disrupted in mutant micromass cultures. Together, our results show that HS is essential for patterning of limb skeletal elements and that BMP signaling is one of the major targets for the regulatory role of HS in this developmental context.
机译:越来越多的证据表明硫酸乙酰肝素(HS)是许多形态学信号传导途径的一体组分。然而,它的作用机制似乎是多元化的,这取决于形态学的类型和发展范围。为了定义HS在骨骼发育中的函数,我们有条件地消融ext1,其使用PRX1-CRE转基因在肢体芽间能中编码HS合成的必需糖基转移酶。这些条件ext1突变小鼠显示出严重的肢体骨骼缺陷,包括缩短和畸形的肢体,oligodactyly和关节融合。在开发突变小鼠的肢体芽中,间充质缩合的软骨性分化延迟和损害,而分化面积漫连扩增。相应地,在突变肢体间充质细胞中,骨形态发生蛋白(BMP)信号传导结构域和BMP2免疫反应性的分布变宽并弥漫。在微粉化培养物中,突变体软骨细胞的软骨性分化延迟,并且对外源BMP的反应性衰减。此外,在突变体微培养物中破坏了围绕软骨细胞结节的PSMAD1 / 5/8表达的软骨细胞和纤维连接蛋白的脑细胞状细胞的偏析。我们的结果表明,HS对于肢体骨骼元素的图案化,并且BMP信号传导是HS在该发育背景下的监管作用的主要目标之一。

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