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Morphological comparison of the craniofacial phenotypes of mouse models expressing the Apert FGFR2 S252W mutation in neural crest- or mesoderm-derived tissues

机译:在神经rest或中胚层衍生的组织中表达Apert FGFR2 S252W突变的小鼠模型的颅面表型的形态学比较

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摘要

Bones of the craniofacial skeleton are derived from two distinct cell lineages, cranial neural crest and mesoderm, and articulate at sutures and synchondroses which represent major bone growth sites. Premature fusion of cranial suture(s) is associated with craniofacial dysmorphogenesis caused in part by alteration in the growth potential at sutures and can occur as an isolated birth defect or as part of a syndrome, such as Apert syndrome. Conditional expression of the Apert FGFR2 S252W mutation in mesoderm was previously shown to be necessary and sufficient to cause coronal craniosynostosis. Here we used micro computed tomography images of mice expressing the Apert mutation constitutively in either mesoderm or neural crest to quantify craniofacial shape variation and suture fusion patterns, and to identify shape changes in craniofacial bones derived from the lineage not expressing the mutation, referred to here as secondary shape changes. Our results show that at postnatal day 0: (i) conditional expression of the FGFR2 S252W mutation in neural crest-derived tissues causes a more severe craniofacial phenotype than when expressed in mesoderm-derived tissues; and (ii) both mesoderm- and neural crest-specific mouse models display secondary shape changes. We also show that premature suture fusion is not necessarily dependent on the expression of the FGFR2 S252W mutation in the sutural mesenchyme. More specifically, it appears that suture fusion patterns in both mouse models are suture-specific resulting from a complex combination of the influence of primary abnormalities of biogenesis or signaling within the sutures, and timing.
机译:颅面骨骼的骨骼来自两个不同的细胞谱系,即颅神经and和中胚层,并在代表主要骨骼生长部位的缝线和软骨下表达。颅骨缝线的过早融合与颅面畸形的发生有关,这种畸形的发生部分是由于缝线生长潜力的改变所致,并且可能以孤立的先天性缺陷或综合征(例如Apert综合征)的一部分出现。先前已证明在中胚层中有条件表达Apert FGFR2 S252W突变是必要的,并且足以引起冠状颅突。在这里,我们使用了在中胚层或神经中组成性表达Apert突变的小鼠的微型计算机断层扫描图像,以量化颅面形状变化和缝线融合模式,并鉴定源自不表达突变谱系的颅面骨的形状变化。随着次级形状的变化。我们的研究结果表明,在出生后第0天:(i)神经rest衍生组织中FGFR2 S252W突变的条件表达引起的颅面表型比中胚层衍生组织中的表达严重。 (ii)中胚层和神经c特定的小鼠模型均显示出二次形状变化。我们还显示,过早的缝合线融合不一定取决于缝线间充质中FGFR2 S252W突变的表达。更具体地,似乎在两种小鼠模型中的缝合线融合模式都是缝合线特异性的,这是由于缝合线内生物发生或信号转导的主要异常的影响和时间的复杂组合所致。

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