A potential osteogenic role for microRNA-181a-5p during palatogenesis

Author:

Schoen Christian1,Bloemen Marjon1,Carels Carine E L2,Verhaegh Gerald W3,Van Rheden Rene1,Roa Laury A14,Glennon Jeffrey C56,Von den Hoff Johannes W1

Affiliation:

1. Department of Orthodontics and Craniofacial Biology, Radboud Institute for Molecular Life Sciences, Radboud University Medical Center , Nijmegen , the Netherlands

2. Department of Human Genetics and Department of Oral Health Sciences, KU Leuven and orthodontic clinic, University Hospitals KU Leuven , Belgium

3. Department of Urology, Radboud Institute for Molecular Life Sciences, Radboud University Medical Center , Nijmegen , the Netherlands

4. MERLN Institute for Technology—Inspired Regenerative Medicine, Maastricht University , the Netherlands

5. Conway Institute of Biomolecular and Biomedical Research, School of Medicine, University College Dublin , Ireland

6. Department of Cognitive Neuroscience, Donders Institute for Brain, Cognition and Behaviour, Radboud University Medical Center , Nijmegen , the Netherlands

Abstract

Summary Background 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. Objectives To analyze the spatiotemporal expression pattern of mmu-miR-181a-5p during palatogenesis and identify possible mRNA targets and their involved molecular pathways. Material and methods 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. Results 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. Limitations Transient overexpression of mmu-miR-181a-5p in mouse embryonic palatal mesenchyme cells limited its analysis to early osteogenesis. Conclusion 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.

Publisher

Oxford University Press (OUP)

Subject

Orthodontics

Reference39 articles.

1. Epidemiology of oral clefts 2012: an international perspective;Mossey;Frontiers of Oral Biology,2012

2. Cleft lip and palate: understanding genetic and environmental influences;Dixon;Nature Reviews Genetics,2011

3. MicroRNAs: target recognition and regulatory functions;Bartel;Cell,2009

4. Regulation of stem cell populations by microRNAs;Mathieu;Advances in Experimental Medicine and Biology,2013

5. MicroRNAs in palatogenesis and cleft palate;Schoen;Frontiers in Physiology,2017

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