4.5 Article

Frequent Co-Expression of miRNA-5p and-3p Species and Cross-Targeting in Induced Pluripotent Stem Cells

Journal

INTERNATIONAL JOURNAL OF MEDICAL SCIENCES
Volume 11, Issue 8, Pages 824-833

Publisher

IVYSPRING INT PUBL
DOI: 10.7150/ijms.8358

Keywords

Induced pluripotent stem cells; reprogramming; miRNA-5p/3p species; cell cycle control

Funding

  1. University of Malaya HIR-MoE Grant Initiative [UM.C/625/1/HIR/MOHE/CHAN/03, A000003 - 50001]
  2. National Science Council, Taiwan [NSC-101-2313-B-034-003]

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Background: A miRNA precursor generally gives rise to one major miRNA species derived from the 5' arm, and are called miRNA-5p. However, more recent studies have shown co-expression of miRNA-5p and -3p, albeit in different concentrations, in cancer cells targeting different sets of transcripts. Co-expression and regulation of the -5p and -3p miRNA species in stem cells, particularly in the reprogramming process, have not been studied. Methods: In this work, we investigated co-expression and regulation of miRNA-5p and -3p species in human induced pluripotent stem cells (iPSCs), mesenchymal stem cells (MSCs) and embryonic stem cells (ESC) using a nanoliter-scale real-time PCR microarray platform that included 1,036 miRNAs. Results: In comparing iPSC and ESC, only 32 miRNAs were found to be differentially expressed, in agreement of the ESC-like nature of iPSC. In the analysis of reprogramming process in iPSCs, 261 miRNAs were found to be differentially expressed compared with the parental MSC and pre-adipose tissue, indicating significant miRNA alternations in the reprogramming process. In iPSC reprogrammed from MSC, there were 88 miRNAs (33.7%), or 44 co-expressed 5p/3p pairs, clearly indicating frequent co-expression of both miRNA species on reprogramming. Of these, 40 pairs were either co-up-or co-downregulated indicating concerted 5p/3p regulation. The 5p/3p species of only 4 pairs were regulated in reverse directions. Furthermore, some 5p/3p species of the same miRNAs were found to target the same transcript and the same miRNA may cross-target different transcripts of proteins of the G1/S transition of the cell cycle; 5p/3p co-targeting was confirmed in stem-loop RT-PCR. Conclusion: The observed cross-and co-regulation by paired miRNA species suggests a fail-proof scheme of miRNA regulation in iPSC, which may be important to iPSC pluripotency.

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