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基因表达分析表明,小鼠前侧继发腭的形成涉及后侧细胞的募集。

Gene expression analysis reveals that formation of the mouse anterior secondary palate involves recruitment of cells from the posterior side.

作者信息

Li Qun, Ding Jixiang

机构信息

Department of Molecular, Cellular and Craniofacial Biology and Birth Defects Center, University of Louisville, KY 40202, USA.

出版信息

Int J Dev Biol. 2007;51(2):167-72. doi: 10.1387/ijdb.062212ql.

DOI:10.1387/ijdb.062212ql
PMID:17294368
Abstract

Cleft palate is a common birth defect caused by disruptions in secondary palate development. Anterior-posterior (A-P) regional specification plays a critical role in palate development and fusion. Previous studies have shown that at the molecular level, the anterior palate can be defined by the expression of Shox-2 and the posterior palate by Meox-2 expression in certain mouse strains. Here, we have extended previous studies by performing a more detailed analysis of these genes during mouse palate development. We found that the expression patterns of Shox-2 and Meox-2 are dynamic during palate development. At embryonic day 12.5 (E12.5), Shox-2 expression is localized to the anterior end and its expression domain covers less than 25% of the length of the palate shelf. The Shox-2 expression domain then gradually expands towards the posterior end and ultimately occupies more than 60% of the palate shelf by E14.5. The expansion of the Shox-2 domain may involve induction of Shox2 expression in additional cells. Reciprocally, the Meox-2 expression domain at E12.5 covers a large portion of the palate shelf, a region more than 70% of the entire palate, but then regresses to the posterior 25% by E14.5. This regression is likely caused by the repression of Meox-2 expression in certain Meox2 expressing cells, rather than the cessation of cell proliferation. Therefore, certain Meox-2 positive "primitive posterior cells" are differentiated/converted into Shox-2 positive "definitive anterior cells" during A-P regional specification.

摘要

腭裂是一种常见的出生缺陷,由继发腭发育中断引起。前后(A-P)区域特化在腭发育和融合中起关键作用。先前的研究表明,在分子水平上,在某些小鼠品系中,前腭可由Shox-2的表达来定义,而后腭则由Meox-2的表达来定义。在这里,我们通过在小鼠腭发育过程中对这些基因进行更详细的分析,扩展了先前的研究。我们发现,Shox-2和Meox-2的表达模式在腭发育过程中是动态变化的。在胚胎第12.5天(E12.5),Shox-2表达定位于前端,其表达域覆盖不到腭突长度的25%。然后,Shox-2表达域逐渐向后端扩展,到E14.5时最终占据腭突的60%以上。Shox-2域的扩展可能涉及在其他细胞中诱导Shox2表达。相反,E12.5时Meox-2的表达域覆盖了腭突的大部分,即整个腭的70%以上的区域,但到E14.5时则退缩到后25%。这种退缩可能是由某些表达Meox-2的细胞中Meox-2表达的抑制引起的,而不是细胞增殖的停止。因此,在A-P区域特化过程中,某些Meox-2阳性的“原始后细胞”分化/转化为Shox-2阳性的“确定前细胞”。

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