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PMID: 27168985 Published · epublish English

Computational identification of miRNAs that modulate the differentiation of mesenchymal stem cells to osteoblasts.

PeerJ ·Vol. 4 ·2016-05-12

Seenprachawong Kanokwan, Nuchnoi Pornlada, Nantasenamat Chanin, Prachayasittikul Virapong, Supokawej Aungkura

Abstract

MicroRNAs (miRNAs) are small endogenous noncoding RNAs that play an instrumental role in post-transcriptional modulation of gene expression. Genes related to osteogenesis (i.e., RUNX2, COL1A1 and OSX) is important in controlling the differentiation of mesenchymal stem cells (MSCs) to bone tissues. The regulated expression level of miRNAs is critically important for the differentiation of MSCs to preosteoblasts. The understanding of miRNA regulation in osteogenesis could be applied for future applications in bone defects. Therefore, this study aims to shed light on the mechanistic pathway underlying osteogenesis by predicting miRNAs that may modulate this pathway. This study investigates RUNX2, which is a major transcription factor for osteogenesis that drives MSCs into preosteoblasts. Three different prediction tools were employed for identifying miRNAs related to osteogenesis using the 3'UTR of RUNX2 as the target gene. Of the 1,023 miRNAs, 70 miRNAs were found by at least two of the tools. Candidate miRNAs were then selected based on their free energy values, followed by assessing the probability of target accessibility. The results showed that miRNAs 23b, 23a, 30b, 143, 203, 217, and 221 could regulate the RUNX2 gene during the differentiation of MSCs to preosteoblasts.

Keywords
Bioinformatics Mesenchymal stem cells MicroRNAs Osteogenesis RUNX2 miRNAs
Article Info
Journal
PeerJ
Abbr.
PeerJ
Published
2016-05-12
Indexed
2016-05-12
Updated
2016-05-13
Language
English
Country/Region
United States
NLM ID
101603425
External Links
PubMed source
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