首页> 外文期刊>Bone >The primary site of the acrocephalic feature in Apert Syndrome is a dwarf cranial base with accelerated chondrocytic differentiation due to aberrant activation of the FGFR2 signaling.
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The primary site of the acrocephalic feature in Apert Syndrome is a dwarf cranial base with accelerated chondrocytic differentiation due to aberrant activation of the FGFR2 signaling.

机译:Apert综合征中头颅功能的主要部位是矮人的颅底,由于FGFR2信号的异常激活而导致软骨细胞分化加速。

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Activation of osteoblastic bone anabolism in the calvarial sutures is considered to be the essential pathologic condition underlying mutant FGFR2-related craniofacial dysostosis. However, early clinical investigations indicated that abnormal cartilage development in the cranial base was rather a primary site of abnormal feature in Apert Syndrome (AS). To examine the significance of cartilaginous growth of the cranial base in AS, we generated a transgenic mouse bearing AS-type mutant Fgfr2IIIc under the control of the Col2a1 promoter-enhancer (Fgfr2IIIc(P253R) mouse). Despite the lacking expression of Fgfr2IIIc(P253R) in osteoblasts, exclusive disruption of chondrocytic differentiation and growth reproduced AS-like acrocephaly accompanied by short anterior cranial base with fusion of the cranial base synchondroses, maxillary hypoplasia and synostosis of the calvarial sutures with no significant abnormalities in the trunk and extremities. Gene expression analyses demonstrated upregulation of p21, Ihh and Mmp-13 accompanied by modest increase in expression of Sox9 and Runx2, indicating acceleration of chondrocytic maturation and hypertrophy in the cranial base of the Fgfr2IIIc(P253R) mice. Furthermore, an acquired affinity and specificity of mutant FGFR2IIIc(P253R) receptor with FGF2 and FGF10 is suggested as a mechanism of activation of FGFR2 signaling selectively in the cranial base. In this report, we strongly suggest that the acrocephalic feature of AS is not alone a result of the coronal suture synostosis, but is a result of the primary disturbance in growth of the cranial base with precocious endochondral ossification.
机译:颅骨缝线中成骨骨合成代谢的激活被认为是突变的FGFR2相关颅面肌发育不全的基本病理条件。但是,早期的临床研究表明,颅底软骨发育异常是Apert综合征(AS)异常特征的主要部位。为了检查AS中颅底软骨生长的重要性,我们在Col2a1启动子增强子的控制下(Fgfr2IIIc(P253R)小鼠)生成了带有AS型突变Fgfr2IIIc的转基因小鼠。尽管在成骨细胞中缺乏Fgfr2IIIc(P253R)的表达,但软骨碎裂的分化和生长的唯一破坏仍再现了AS状的头颅畸形,伴有前颅底短,颅底软骨融合,上颌骨发育不全和颅骨缝合线突触,无明显异常在躯干和四肢。基因表达分析表明p21,Ihh和Mmp-13上调,同时Sox9和Runx2表达适度增加,表明Fgfr2IIIc(P253R)小鼠的颅底软骨发育成熟和肥大。此外,建议将获得的突变FGFR2IIIc(P253R)受体与FGF2和FGF10的亲和力和特异性作为在颅底选择性激活FGFR2信号的机制。在此报告中,我们强烈建议AS的顶头功能不单是冠状缝线突触形成的结果,而是颅骨基底生长过早和软骨内骨化的主要障碍。

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