Augmentation of bone morphogenetic protein signaling in cranial neural crest cells in mice deforms skull base due to premature fusion of intersphenoidal synchondrosis

IF 2.4 4区 生物学 Q2 DEVELOPMENTAL BIOLOGY genesis Pub Date : 2023-01-09 DOI:10.1002/dvg.23509
Hiroki Ueharu, Haichun Pan, Satoru Hayano, Karen Zapien-Guerra, Jingwen Yang, Yuji Mishina
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引用次数: 2

Abstract

Craniofacial anomalies (CFAs) are a diverse group of disorders affecting the shapes of the face and the head. Malformation of the cranial base in humans leads CFAs, such as midfacial hypoplasia and craniosynostosis. These patients have significant burdens associated with breathing, speaking, and chewing. Invasive surgical intervention is the current primary option to correct these structural deficiencies. Understanding molecular cellular mechanism for craniofacial development would provide novel therapeutic options for CFAs. In this study, we found that enhanced bone morphogenetic protein (BMP) signaling in cranial neural crest cells (NCCs) (P0-Cre;caBmpr1a mice) causes premature fusion of intersphenoid synchondrosis (ISS) resulting in leading to short snouts and hypertelorism. Histological analyses revealed reduction of proliferation and higher cell death in ISS at postnatal day 3. We demonstrated to prevent the premature fusion of ISS in P0-Cre;caBmpr1a mice by injecting a p53 inhibitor Pifithrin-α to the pregnant mother from E15.5 to E18.5, resulting in rescue from short snouts and hypertelorism. We further demonstrated to prevent premature fusion of cranial sutures in P0-Cre;caBmpr1a mice by injecting Pifithrin-α through E8.5 to E18.5. These results suggested that enhanced BMP-p53-induced cell death in cranial NCCs causes premature fusion of ISS and sutures in time-dependent manner.

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小鼠颅神经嵴细胞中骨形态发生蛋白信号的增强导致蝶间软骨联合症早期融合导致颅底畸形
颅面畸形(CFAs)是影响面部和头部形状的多种疾病。人类颅底畸形导致CFAs,如面中部发育不全和颅缝闭锁。这些患者在呼吸、说话和咀嚼方面有明显的负担。侵入性手术干预是目前纠正这些结构缺陷的主要选择。了解颅面发育的分子细胞机制将为CFAs提供新的治疗选择。在这项研究中,我们发现颅神经嵴细胞(NCCs) (P0-Cre;caBmpr1a小鼠)中骨形态发生蛋白(BMP)信号的增强会导致蝶间软骨联合症(ISS)的过早融合,从而导致短鼻和远端异动。组织学分析显示,在出生后第3天,ISS细胞增殖减少,细胞死亡增加。我们证明,通过向E15.5至E18.5的妊娠母亲注射p53抑制剂聚氟乙烯酯-α,可以防止P0-Cre;caBmpr1a小鼠ISS的过早融合,从而使其从短吻和远视中获救。我们进一步证明通过E8.5至E18.5注射聚氟乙烯酯-α可以防止P0-Cre;caBmpr1a小鼠颅缝过早融合。这些结果表明,bmp -p53诱导的颅NCCs细胞死亡增强导致ISS和缝合线以时间依赖性的方式过早融合。
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来源期刊
genesis
genesis 生物-发育生物学
CiteScore
3.60
自引率
0.00%
发文量
40
审稿时长
6-12 weeks
期刊介绍: As of January 2000, Developmental Genetics was renamed and relaunched as genesis: The Journal of Genetics and Development, with a new scope and Editorial Board. The journal focuses on work that addresses the genetics of development and the fundamental mechanisms of embryological processes in animals and plants. With increased awareness of the interplay between genetics and evolutionary change, particularly during developmental processes, we encourage submission of manuscripts from all ecological niches. The expanded numbers of genomes for which sequencing is being completed will facilitate genetic and genomic examination of developmental issues, even if the model system does not fit the “classical genetic” mold. Therefore, we encourage submission of manuscripts from all species. Other areas of particular interest include: 1) the roles of epigenetics, microRNAs and environment on developmental processes; 2) genome-wide studies; 3) novel imaging techniques for the study of gene expression and cellular function; 4) comparative genetics and genomics and 5) animal models of human genetic and developmental disorders. genesis presents reviews, full research articles, short research letters, and state-of-the-art technology reports that promote an understanding of the function of genes and the roles they play in complex developmental processes.
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