The skull roof, or calvaria, is comprised of interlocking plates of bones that encase the brain. Separating these bones are fibrous sutures that permit growth. Currently, we do not understand the instructions for directional growth of the calvaria, a process which is error-prone and can lead to skeletal deficiencies or premature suture fusion (craniosynostosis, CS). Here, we identify graded expression of fibronectin (FN1) in the mouse embryonic cranial mesenchyme (CM) that precedes the apical expansion of calvaria. Conditional deletion of Fn1 or Wasl leads to diminished frontal bone expansion by altering cell shape and focal actin enrichment, respectively, suggesting defective migration of calvarial progenitors. Interestingly, Fn1 mutants have premature fusion of coronal sutures. Consistently, syndromic forms of CS in humans exhibit dysregulated FN1 expression, and we also find FN1 expression altered in a mouse CS model of Apert syndrome. These data support a model of FN1 as a directional substrate for calvarial osteoblast migration that may be a common mechanism underlying many cranial disorders of disparate genetic etiologies.
Apical expansion of calvarial osteoblasts and suture patency is dependent on fibronectin cues.
颅骨成骨细胞的顶端扩张和颅缝通畅取决于纤连蛋白信号
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作者:Feng Xiaotian, Molteni Helen, Gregory Megan, Lanza Jennifer, Polsani Nikaya, Gupta Isha, Wyetzner Rachel, Hawkins M Brent, Holmes Greg, Hopyan Sevan, Harris Matthew P, Atit Radhika P
| 期刊: | Development | 影响因子: | 3.600 |
| 时间: | 2024 | 起止号: | 2024 Apr 1; 151(7):dev202371 |
| doi: | 10.1242/dev.202371 | 研究方向: | 信号转导、细胞生物学 |
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