Department of Orthodontics and Craniofacial Biology, Radboud Institute for Molecular Life Sciences, Radboud University Medical Center, Nijmegen, the Netherlands.
Department of Human Genetics and Department of Oral Health Sciences, KU Leuven and orthodontic clinic, University Hospitals KU Leuven, Belgium.
Eur J Orthod. 2023 Sep 18;45(5):575-583. doi: 10.1093/ejo/cjad037.
In a previous study, we found that the highly conserved hsa-miR-181a-5p is downregulated in palatal fibroblasts of non-syndromic cleft palate-only infants.
To analyze the spatiotemporal expression pattern of mmu-miR-181a-5p during palatogenesis and identify possible mRNA targets and their involved molecular pathways.
The expression of mmu-miR-181a-5p was analyzed in the developing palates of mouse embryos from E11 to E18 using qPCR and ISH. Mouse embryonic palatal mesenchyme cells from E13 were used to analyze mmu-miR-181a-5p expression during osteogenic differentiation. Differential mRNA expression and target identification were analyzed using whole transcriptome RNA sequencing after transfection with a mmu-miR-181a-5p mimic. Differentially expressed genes were linked with underlying pathways using gene set enrichment analysis.
The expression of mmm-miR-181a-5p in the palatal shelves increased from E15 and overlapped with palatal osteogenesis. During early osteogenic differentiation, mmu-miR-181a-5p was upregulated. Transient overexpression resulted in 49 upregulated mRNAs and 108 downregulated mRNAs (adjusted P-value < 0.05 and fold change > ± 1.2). Ossification (Stc1, Mmp13) and cell-cycle-related GO terms were significantly enriched for upregulated mRNAs. Analysis of possible mRNA targets indicated significant enrichment of Hippo signaling (Ywhag, Amot, Frmd6 and Serpine1) and GO terms related to cell migration and angiogenesis.
Transient overexpression of mmu-miR-181a-5p in mouse embryonic palatal mesenchyme cells limited its analysis to early osteogenesis.
Mmu-miR-181-5p expression is increased in the developing palatal shelves in areas of bone formation and targets regulators of the Hippo signaling pathway.
在之前的研究中,我们发现非综合征性腭裂婴儿的腭部成纤维细胞中高度保守的 hsa-miR-181a-5p 表达下调。
分析 mmu-miR-181a-5p 在腭发育过程中的时空表达模式,并鉴定可能的 mRNA 靶标及其涉及的分子途径。
使用 qPCR 和原位杂交技术分析 E11 至 E18 期小鼠胚胎发育中的腭 mmu-miR-181a-5p 表达。使用 E13 期的小鼠胚胎腭间充质细胞分析成骨分化过程中 mmu-miR-181a-5p 的表达。转染 mmu-miR-181a-5p 模拟物后,通过全转录组 RNA 测序分析差异表达 mRNA 和靶标鉴定。使用基因集富集分析将差异表达基因与潜在途径相关联。
腭突 mmu-miR-181a-5p 的表达从 E15 开始增加,并与腭骨发生重叠。在早期成骨分化过程中,mmu-miR-181a-5p 上调。瞬时过表达导致 49 个上调的 mRNA 和 108 个下调的 mRNA(调整后的 P 值 < 0.05 和倍数变化 > ± 1.2)。上调的 mRNAs 显著富集于骨化(Stc1、Mmp13)和细胞周期相关的 GO 术语。对可能的 mRNA 靶标的分析表明 Hippo 信号(Ywhag、Amot、Frmd6 和 Serpine1)和与细胞迁移和血管生成相关的 GO 术语显著富集。
在小鼠胚胎腭间充质细胞中转染 mmu-miR-181a-5p 的瞬时过表达限制了其对早期成骨的分析。
在骨形成区域的发育中的腭突中 mmu-miR-181-5p 的表达增加,并靶向 Hippo 信号通路的调节剂。